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39 Fully Funded PhD Programs at University of Nottingham, England

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Are you holding Master’s degree and looking for fully funded PhD positions? University of Nottingham, England invites online application for multiple funded PhD Programs / fully funded PhD positions in various research areas.

Candidates interested in fully funded PhD positions can check the details and may apply as soon as possible. Interested and eligible applicants may submit their online application for PhD programs via the University’s Online Application Portal. 

1. Fully Funded PhD Position in modelling of hydraulic fracturing

Summary of PhD Program:

This position is part of a joint project between the Geo-Energy Research Centre and the Composites Research Group and focuses on understanding the propagation of fracture due to applied fluid pressure. This PhD position will focus on the modelling of the fluid fracture interaction. The objective is to develop a coupled numerical model of dynamic fracture propagation in three dimension that accounts for the complex fluid-fracture interaction. This model will provide fundamental understanding on how fracture initiates, propagates, and arrests. The numerical results will be compared to experimental data from our collaborators at Harvard University and used to uncover the fundamental mechanisms governing hydraulic fracture.

Application Deadline: 05 July 2023

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2. Fully Funded PhD Position in modelling of dynamic fracture in 3D

Summary of PhD Program:

This position is part of a joint project between the Geo-Energy Research Centre and the Composites Research Group and focuses on understanding how fracture propagate in brittle materials such as rock, glass, ceramics, or concrete. This PhD position will focus on the modelling of the fracture in heterogeneous brittle materials. Most of our current understanding is based on two dimensional models and assume homogeneous material properties. However, real materials are three dimensional, mechanical properties vary spatially, and defects are present.

Application Deadline: 05 July 2023

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3. Fully Funded PhD Position in MAS-resistant Thermal Barrier Coating

Summary of PhD Program:

The project will focus on an emerging Suspension Plasma Spray (SPS) and Solution Precursor Plasma Spray (SPPS) to deposit the TBCs. The University of Nottingham has installed the UK’s first high-power, three cathodes axial injection suspension thermal spray to produce tailored microstructures for TBC.

Application Deadline: 14 July 2023

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4. Fully Funded PhD Position in Structural Behaviour of High Strength Steel Members and Connections

Summary of PhD Program:

In this project, CFHSS tubular members and joints made of S700 and higher steel grades will be experimentally and numerically investigated for their ultimate resistances under axial loads. Circular, square and rectangular hollow sections will be used as brace and chord members. Tests will be conducted on specimens under static loads. Test results will be used to meticulously develop finite element models of the investigated members and joints. Detailed numerical parametric studies will then be performed to analyse the influence of governing parameters on the static behaviour of these members and joints.

Application Deadline: 15 July 2023

Apply now

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5. Fully Funded PhD Position in Next generation zeolite membranes for H2 purification

Summary of PhD Program:

The integrated PhD in Sustainable Hydrogen is a 4-year programme which, in addition to your research project, will include a combination of taught skills and experiential learning. The training programme we offer will support you throughout your PhD journey, providing the multidisciplinary training you’d expect, but also developing entrepreneurial, managerial and project skills along with the skills needed to communicate your ideas to a wide range of audiences. In addition, we provide opportunities to develop your skills through industrial secondments, outreach activities, industry challenge events and writing retreats.

Application Deadline: 19 July 2023

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6. Fully Funded PhD Position in Ultrasonically-assisted materials processing to support sustainable power electronics

Summary of PhD Program:

Applicants are invited to contribute to this exciting area of research through a 3-year PhD project which holistically explores and characterises processes of ultrasonically-induced plasticity and discovers how these can be harnessed beyond currently accepted limits to facilitate sustainable welding and sintering. Research will involve the correlative use of advanced materials and mechanical characterisation modalities to map material change both spatially, temporally and the interactions between these three-dimensionally.

Application Deadline: 21 July 2023

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7. Fully Funded PhD Position in Manufacturing Engineering Modular and Adaptable Plug-and-Produce Manufacturing Software Solutions

Summary of PhD Program:

We are looking for a highly motivated PhD candidate to undertake research in the development of modular and adaptable plug-and-produce manufacturing software solutions. The successful candidate will address existing research gaps and propose novel methodologies for creating flexible, interoperable, and reusable manufacturing software solutions.

Application Deadline: 26 July 2023

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8. Fully Funded PhD Position in Training in Creating Our Lives in Data

Summary of PhD Program:

The studentship will focus on a combination of novel sensor solutions to inspect complex environments, human-aware motion planning methods to navigate in dense human spaces and interaction abilities to receive human help when necessary to handle potentially problematic situations and optimise day-to-day operations in real use case scenarios provided by industrial partners.

Application Deadline: 15 May 2023

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9. Fully Funded PhD Position in Creating Our Lives in Data

Summary of PhD Program:

We are seeking a suitable candidate to undertake an interdisciplinary PhD studentship commencing September 2023. The successful candidate will work with the multi-national company Reckitt to explore how Artificial Intelligence and other digital technologies (e.g. sensors) can be used to support current human operators to optimise manufacturing processes and deliver environmental sustainability benefits.

Application Deadline: 15 May 2023

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10. Fully Funded PhD Position in Development of the Mg battery

Summary of PhD Program:

We are seeking to recruit a highly motivated and enthusiastic PhD student to work with our Magnesium battery team and with our industrial collaborators. The Mg electrode has almost twice the volumetric capacity of metallic Li and a five-fold increase compared to today’s graphite electrodes. The battery could also provide cost and sustainability advantages over Li-ion due to the natural abundance of Mg. The candidate will work within the Nottingham Applied Materials and Interfaces Group at the University of Nottingham. Our research focuses on understanding the chemistry that underpins advanced energy systems and how this knowledge can be used to unlock a new generation of energy storage technologies for electrification of the automotive sector.

Application Deadline: 18 May 2023

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11. Fully Funded PhD Position in Development of Organic Batteries

Summary of PhD Program:

We are seeking to recruit a highly motivated and enthusiastic PhD student to work with our organic battery team and with our industrial collaborators. The candidate will work within the Nottingham Applied Materials and Interfaces Group at the University of Nottingham. Our research focuses on understanding the chemistry that underpins advanced energy systems and how this knowledge can be used to unlock a new generation of energy storage technologies for electrification of the automotive sector.

Application Deadline: 18 May 2023

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12. Fully Funded PhD Position in Residue-selective late-stage functionalisation of peptides via electrosynthesis

Summary of PhD Program:

This project will involve the development of electrochemical techniques to modify peptides via desulfurative, decarboxylative, and deoxygenative radical chemistry. The candidate will receive extensive training in solid-phase peptide synthesis, organic synthesis, electrosynthesis, and analytical techniques (NMR, mass spec., HPLC, UV, IR, CD). The chemistry will be developed using an IKA ElectraSyn 2.0 Pro, however, the opportunity to construct bespoke electrochemical apparatus is available.

Application Deadline: 21 May 2023

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13. Fully Funded PhD Position in Synthesis of Monomers and Degradable Polymers from Renewable Feedstocks

Summary of PhD Program:

Applications are invited for a PhD Studentship, starting October 2023, in the School of Chemistry. The PhD project will focus on development of new monomeric building-blocks from renewable feedstocks using a wide range of synthetic methodologies and sustainable strategies. These will be used to produce fully degradable polymers for applications in homecare and personal care using polymerisation strategies that involve for example enzymatic polymerisation, supercritical carbon dioxide (scCO2) and microwave (µW) technologies.

Application Deadline: 03 June 2023

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14. Fully Funded PhD Position in Visible-light-mediated functionalisation of amino acids, peptides, and proteins

Summary of PhD Program:

This project will involve the development of new photochemical methods to synthesise non-canonical amino acids, and site-selectively modify peptides and proteins. The candidate will further extend the scope of our desulfurative strategy as well as developing new avenues based on the natural chemical functionality of the proteome.

Application Deadline: 20 June 2023

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15. Fully Funded PhD Position in Development of Novel Synthetic Methodologies through Visible-Light Photoredox Catalysis

Summary of PhD Program:

Synthetic organic chemistry lays at the heart of Science and Technology and has greatly enabled the development of important life-changing discoveries. Conventional approaches for the synthesis of complex organic molecules usually rely on sequences of chemical reactions from early intermediates, often requiring the use of protecting groups and functional group oxidation state modulation. The time and resources required to complete the complex synthetic routes greatly reduce the number of structures accessible, defining strict boundaries to chemists’ imagination for the invention of the molecules of tomorrow.

Application Deadline: 05 July 2023

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16. Fully Funded PhD Position in computational design of materials for quantum technologies

Summary of PhD Program:

Point-defects in semiconductors have the potential for outstanding sensitivity to temperature, electric/magnetic fields and pressure, making them ideal quantum sensors. Utilizing such defects in two-dimensional materials will facilitate close proximity, enhancing sensitivity and enabling practical nano-scale mapping of external stimuli. Furthermore, this unique materials class offers improved tunability via strong structure-property relations. Computational-led materials design presents an expediated route for the development of these platforms for quantum technologies. A toolkit of ab initio techniques will enable tailored design down to the atomic scale.

Application Deadline: 12 July 2023

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17. Fully Funded PhD Position in The impacts of carbohydrate and protein interactions in novel feed ingredients on amino acid digestibility

Summary of PhD Program:

Feed efficiency in livestock is currently dependent on feeding high quality ingredients such as soybean meal. There is an urgent need to find alternative more sustainable protein sources for animal feeds. The Future Proteins Platform1 is investigating a number of potential alternative protein sources, including under-utilised crops, such as Bambara groundnut and Winged bean, as well as microalgae, insects and single-cell proteins (SCP), which have high (50-70%) protein contents and can be produced using waste or extremely low-quality feed sources. However they are also high in carbohydrate (CHO), particularly fibre, and anti-nutritional factors (ANFs) which can reduce digestibility/ bioavailability of nutrients.

Application Deadline: 23 May 2023

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18. Fully Funded PhD Position in Exploring the association between temperature and sweetness perception

Summary of PhD Program:

Sweet snacks and dessert tend to give consumers a great pleasure and satisfaction, but often it also gives consumers a guilty emotion after consumption due to its high calorie content. The global sugar reduced/free sweet food market continue evolving due to increased number of health-conscious consumers, which does not only give consumers the indulgent sensation, but also offer a guilty-free emotion after eating. Therefore, innovations are constantly needed in sugar substitute’s solution to introduce sugar-reduced products without compromising its taste. It is well known that temperature interact perceived taste and flavour during consumption, for example, cold beverage taste less sweet than drinking at ambient temperature.

Application Deadline: 23 May 2023

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19. Fully Funded PhD Position in Encapsulating and cryoprotecting properties of natural composites based on gum acacia

Summary of PhD Program:

The phenomenon of emergent behaviour in biopolymer systems has been a captivating subject for a long time, providing valuable insights into the behaviour of self-organizing systems. In this study, we investigate the structure of gum acacia resin, a natural polymer commonly used in food and biopharmaceutical applications. By taking inspiration from nature, our goal is to understand the relationship between the structure and physical properties of gum acacia. This knowledge will enable us to elucidate the functional role of gum acacia in nutrition and cryopreservation. The applications of this research include the encapsulation of probiotics and nutrients, which can be achieved by controlling the kinetics of dissolution and creating a barrier against harsh biological environments such as gastric secretions.

Application Deadline: 23 May 2023

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20. Fully Funded PhD Position in The development of bacteriophage as bionanoparticles for gene therapy

Summary of PhD Program:

The study will be highly novel yet based on well-established engineering principles for bacteriophage. Conventional phage-display libraries present random peptides fused to a coat protein. The resulting PNPs display the peptide-fusion on the surface and carry packaged ssDNA coding for the peptide. This display system can be readily engineered to produce libraries with billions of peptide variants, each displaying a unique peptide and carrying the corresponding peptide gene. Panning of such libraries and subsequent Next Generation Sequencing/bioinformatics analysis of peptide genes that are within cell-associated PNPs can identify peptides with specificity for different cell types.

Application Deadline: 23 May 2023

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21. Fully Funded PhD Position in Machine Learning for predicting yeast phenotype from genotype for biotech applications

Summary of PhD Program:

This project will apply artificial intelligence approaches to address this challenge: given data on yeast genotypes, growth conditions and phenotypes (traits), can we develop predictive models for the phenotype of novel yeast strains and hence ultimately predict strains that could out-perform any of those in the training data. Such novel strains could be produced using synthetic biology approaches and the model predictions tested. Yeast is an ideal platform for the manufacture of biomedically important protein products, such as life-saving medicines. The diversity of yeast genotypes and protein products means that the best strain for optimal yield of a given product is typically unknown – but ripe for identification using novel AI methods.

Application Deadline: 23 May 2023

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22. Fully Funded PhD Position in Examining variations in adults’ perceptual and cognitive learning following computer-based training

Summary of PhD Program:

The goal of this PhD is to examine perceptual and cognitive learning arising from computer-based auditory-cognitive training tasks in adults and to explore demographic and task-related factors that may influence learning outcomes. The project will explore both on-task outcomes (changes in performance for tasks that are trained) and off-task outcomes (transfer of learning to changes in performance for untrained tasks. There will be scope for experimental research using normal-hearing and hearing-impaired participants. The long-term impact of this research (beyond the scope of this project) will be to inform the optimisation of new interventions designed to improve real-world listening for adults who have hearing loss.

Application Deadline: 31 May 2023

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23. Fully Funded PhD Position in Respiratory pathogen transmission in university settings

Summary of PhD Program:

Understanding the mechanisms underlying patterns of SARS-CoV-2 transmission is important for informing strategic public health measures against respiratory pathogens more widely. Universities were identified as likely to support rapid transmission of a new pathogen such as SARS-CoV-2 in their usual mode of operation. This project will build on expertise developed during the SARS-CoV-2 pandemic to address key outstanding questions about the degree to which outbreaks can be mitigated while maintaining in-person activities, the extent to which institutional outbreaks are coupled to the epidemic in the surrounding community, and the role of demographic turnover and other seasonal effects.

Application Deadline: 01 June 2023

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24. Fully Funded PhD Position in Structural and copy number variation analysis using adaptive long read sequencing

Summary of PhD Program:

Long Read Sequencing (LRS) is a critical tool for understanding disease and variation in populations of samples ranging from human to critical food crops. LRS is particularly suited to the identification of structural variation due to the information gain within a single long read molecule. However, Oxford Nanopore Technologies sequencers do not have to sequence long reads. Adaptive Sampling using direct base calling, first demonstrated in our laboratory in Nottingham, enables dynamic selection of individual molecules during sequencing (Nature Biotech, 2020, Nature Methods, 2016). A sequenced read will be the entire length of the molecule, whereas a rejected read will become a short read.

Application Deadline: 23 May 2023

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25. Fully Funded PhD Position in Precious metal biorecovery using microbial factory

Summary of PhD Program:

In this project, we will work closely with our industrial partner Freeland Scientific Ltd to explore the suitability of using autotrophic bacteria to design a ‘one-pot bio-refining’ process, adopting a combinatorial chemistry and synthetic biology approaches for novel precious metal recovery. Our group recently established an arsenal of genetic tools in several difficult to handle bacteria, including CRISPR/Cas9, CRISPRi, Tn5 transposon, which will allow us to investigate and enhance the metal bio-absorption rate in bacterium such as Cupriavidius sp and manipulate and control the metal nanoparticle formation and release. This 4-year PhD project will be hosted in Nottingham BBSRC/EPSRC Synthetic Biology Research Centre. The study will allow for training in a unique multidisciplinary environment, incorporating gas fermentation, synthetic biology, microbial physiology, metabolic engineering and process design.

Application Deadline: 23 May 2023

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26. Fully Funded PhD Position in Engineeering (AstroPharmacy)

Summary of PhD Program:

Applications are invited for fully-funded PhD studentships (4 years) within the Faculty of Engineering at the University of Nottingham. The students will work within interdisciplinary supervisory teams in the collaborative science and engineering in the design, construction, development and testing of on-site, on-demand manufacture of pharmaceuticals in a space environment, including on CubeSat platforms.

Application Deadline: 21 May 2023

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27. Fully Funded PhD Position in Optimisation of Power Electronics using Artificial Intelligence and Machine Learning Techniques

Summary of PhD Program:

This project will propose new power electronics converter optimisation techniques based on artificial intelligence (AI) and machine learning (ML). The main aim is to investigate the use of AI and ML techniques for the holistic multi-objective (MO) optimisation of power electronics, with a focus on magnetic components’ design, converter topology, thermal management, and cost. Another aim of the project is to evaluate the impact of AI and ML-based power electronics optimisation on power density, efficiency, and cost. To validate the developed techniques hardware prototypes will be designed and suitable benchmarking will be done against other established optimisation methods.

Application Deadline: 31 May 2023

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28. Fully Funded PhD Position in Optimisation of power and control systems for high-speed motor

Summary of PhD Program:

The goal of sustainable air travel is driving the electrification of aerospace. Electrified aerospace calls for high-power and low-weight electrical machines. High power densities are achieved by operating at the highest speeds. A critical element of achieving reliable, cost-effective, high speed electrical machinery is the proper control and application of power exchange between the machines and other components in the aircraft. Control systems and power electronics are required to drive rotation and magnetically levitate the rotating part. Levitation removes the need for conventional bearings, unlocking the highest speeds and power densities.

Application Deadline: 31 May 2023

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29. Fully Funded PhD Position in Automotive Power Electronics Reference

Summary of PhD Program:

The UK aims to cut carbon emissions by at least 68% from the 1990 level by the end of 2030. New cars and vans solely powered by diesel and petrol will be banned for sale from 2030. Electric vehicles will take the leading role in achieving this emission target as the latest models provide a number of advantages including superior driver comfort and lower emissions. However, there are a number of technical challenges which still impede their widespread adoption such as the cost, range anxiety and charging infrastructure.

Application Deadline: 31 May 2023

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30. Fully Funded PhD Position in Next Generation Electric Machine Based on Carbon Nanotube (CNT) Yarn Winding Technology

Summary of PhD Program:

To achieve the “Net Zero” target, ambitious roadmaps have been drawn up which translate into step-change performance requirements for electrical motors by 2035. The research will be carried out with support from state-of-the-art electric motor manufacturing platforms both at the MTC and at UoN. Based on rapidly advancing Carbon Nanotube (CNT) material technology, the PhD project will be focused on development of next generation electric machines for electric vehicle traction and aerospace propulsion, featuring opportunity for significant improvements on performance, sustainability, and cost-effectiveness.

Application Deadline: 31 May 2023

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31. Fully Funded PhD Position in Airbus

Summary of PhD Program:

A PhD student working on this project will conduct research in manufacturing of fibre-reinforced polymer composites, specifically Resin Transfer Moulding (RTM) of primary aerostructures. It is a well-known problem that local variability in material properties causes uncertainty in the process and may result in variability in mechanical properties of the finished component. Aiming at obtaining a consistently high product quality in the RTM process, the PhD student will set up data acquisition systems for process monitoring and implement process control systems to minimise variability in component properties.

Application Deadline: 31 May 2023

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32. Fully Funded PhD Position in Cryogenic modelling for enabling LH2 for aviation

Summary of PhD Program:

We are looking for an enthusiastic and self-motivated person with a rigorous approach to research. Applicants should have, or be expected to gain a high 2:1, preferably a 1st class honours degree in Aerospace or Mechanical Engineering or a related degree. A good knowledge and/or experience in fluid mechanics with a keen interest in thermodynamics/thermal management is essential, as is the ability to work well in a team. Prior experience in CFD or AI approaches for Thermofluids would be an advantage.

Application Deadline: 31 May 2023

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33. Fully Funded PhD Position in Silicon Carbide Power Electronic devices for Medium Voltage applications

Summary of PhD Program:

Silicon Carbide (SiC) devices offer improved efficiency, power density, operating limits, and functionality over traditional Silicon. They are considered key enablers of future medium voltage grids with increased share of renewables, full electric ships, drives for electric trains or specialised high-power instruments, where several kilovolts and hundreds or thousands of amperes need to be handled. However, it is still a challenge to design SiC devices scalable to handle the required high current, whilst also supporting such high voltages. It is also a challenge to package such devices without compromising the device operation.

Application Deadline: 15 June 2023

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34. Fully Funded PhD Position in Crafting Hybrid Perovskites for Photochemical Supercapacitors

Summary of PhD Program:

Hybrid perovskites are gaining increasing attention for energy conversion and storage due to the application potential of hybrid perovskites being controlled by cations in sublattice sites which correlates with the amount of oxygen (O2) σ*- antibonding and the degree of B-site transition metal–O2 covalency. The fabrication of hybrid perovskites via different materials processing routes offers the opportunity for structural tunability and modification of their optical, electronic, and chemical properties via defect chemistry.

Application Deadline: 20 June 2023

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35. Fully Funded PhD Position in Enzyme discovery for clean hydrogen production and green chemistry applications

Summary of PhD Program:

The project will explore the diversity of hydrogenases and will aim at discovering and characterising novel enzymes with improved performances. These enzymes catalyse key steps in hydrogen metabolism in numerous microorganisms and will be exploited to develop new sustainable processes for H2 production. Currently, industrial applications are limited by the fact that only a small number of these enzymes have been studied, and this restricts the “catalogue” of enzymes available for any given application. Innovative hydrogen production technologies will be essential to decarbonising the global economy and there is potential to develop novel biotechnological processes.

Application Deadline: 29 June 2023

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36. Fully Funded PhD Position in 3D Multi-material inkjet printing of Ceramics and Nanocomposites

Summary of PhD Program:

Inkjet printing allows multiple materials to be 3D printed concurrently, rather than sequentially, allowing greater design control. We will use leading-edge multi-material inkjet 3D printing technology to develop functional devices composed of advanced engineering materials, including 3D-printed ceramics and nanoparticle composites. We will develop advanced ceramic nanoparticle-filled resins and will control the 3D distribution of differing functional materials to give high-resolution control over graded properties, graded chemistries, and 3D-integrated components. We will investigate 3D multi-ceramic printing of materials with functional properties spanning interests of mechanical properties, thermal management, electrical conduction, and chemical power storage.

Application Deadline: 29 June 2023

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37. Fully Funded PhD Position in Metamaterials for Life-Sciences

Summary of PhD Program:

The advent of the smart-phone has undoubtedly revolutionised portable imaging systems, but the need for smarter imaging capability grows with increased healthcare end-user and accessibility demands. Imaging is a crucially important aspect in many scientific fields, with it being of particular importance in life-sciences and biomedical imaging. Novel techniques, such as microscopy, fluorescence microscopy, and light-field imaging allow users to gather more useful information with higher levels of details than ever imagined. However, lots of these advanced systems still rely on old technologies based on standard glass lenses and components which are bulky and have limited capabilities.

Application Deadline: 30 June 2023

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38. Fully Funded PhD Position in Cancer diagnostics using nano-ultrasonics and artificial intelligence

Summary of PhD Program:

The Optics and Photonics Group from the Faculty of Engineering at the University of Nottingham (UK) is pleased to offer a PhD opportunity on fundamental research on novel approaches for cancer diagnostics. The mechanical properties of cells and tissue, particularly at the micro and nano levels, play a crucial role in biology. Over the past few years, there has been a significant increase in interest in techniques for characterizing mechanical properties due to the strong links between tissue mechanics and various health issues.

Application Deadline: 30 June 2023

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39. Fully Funded PhD Position in numerical modelling of rubber friction

Summary of PhD Program:

We conduct research at the interface between mechanics, materials and scientific computing. Our research focusses on modelling the link between micro- to mesoscale properties of engineering and geophysical materials and their macroscale mechanical behaviour. The centre of our interests is on dynamic fracture, friction, earthquake source mechanics and granular material mechanics. We aim to provide a fundamental understanding of multi-scale and multi-physical mechanics of materials and develop predictive numerical tools for mechanical failure of materials and structures.

Application Deadline: 05 July 2023

Apply now

 

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