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We have 162 Synthetic Chemistry PhD Projects, Programmes & Scholarships for Self-funded Students

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I am a self funded student


Synthetic Chemistry PhD Projects, Programmes & Scholarships for Self-funded Students

We have 162 Synthetic Chemistry PhD Projects, Programmes & Scholarships for Self-funded Students

Harnessing continuing flow and automated reaction technologies for synthetic and electrocatalytic transformation

This exciting, multi-disciplinary research project is related to significant DSTL funding recently obtained by our group. Harnessing several modern technologies (including flow chemistry and automation) the project will incubate new approaches to organic and inorganic synthesis. Read more

Deploying safer robot chemists in real laboratory environments

Robotic chemists [1] are a totally new and disruptive development in human-centric labs, and these systems are already beginning to carry out complex experiments that require skills beyond sample transportation (e.g., sample weighing [2] and scraping samples from vials [3]. Read more

EPSRC - Light-coupled NMR to design novel photo-driven chemistry and materials

Over the last decade, visible light-driven chemistry has come to the forefront of modern organic synthesis, chemical biology, and materials science, providing a powerful platform through which to rapidly construct new and complex molecules. Read more

Computationally driving automated functional materials discovery for net zero technologies with machine reasoning and decision-making

This project, suited to a student with a Computer Science or Mathematics background, will formally define the nature and consequences of the decisions that need to be made in the automated workflow and identify both the optimal combination of existing methods and tools to accelerate discovery and the gaps in capability that currently exist. Read more

Automated experimental functional materials discovery for net zero technologies

The discovery of materials that will drive technologies for the net zero transition, such as batteries, solar absorbers, rare-earth-free magnets for wind power and myriad other unmet needs, is a scientific and societal grand challenge that requires experimental realisation of materials in the laboratory. Read more

High-throughput first-principle simulations of charge transport in organic semiconductors

This project focuses on application of first-principle, fully quantum simulation methods such as Hybrid Monte-Carlo to study charge transport in a vast class of quasi-2D molecular organic semiconductors (rubrene, pentacene, and >4000 other materials). Read more

Degradable and sustainable polymers in the Environment

The influence of plastic pollution on our environment has been well documented, however, there remains a knowledge gap between relating to how new polymers and plastics might biodegrade. Read more

Cooperative catalysis using iron-based Organometallic frustrated Lewis pairs

Frustrated Lewis pairs (FLPs) has led to major advances in the field of small molecule activation and catalysis, being considered as one of the most exciting modern-day developments in main group chemistry. Read more

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