Completed Physics & Astronomy Materials & Manufacturing

New Tools for Nanometrology

In plain English

AI plain-English summary

A new UK research centre will build tools to measure objects at the nanoscale—a billionth of a metre—with unprecedented precision. Current techniques for characterising nanomaterials often lack the resolution or speed needed to see how these tiny structures behave in real time. This limits progress in fields from electronics to medicine, where engineers need to know exactly how a material’s structure relates to its performance. The London Centre for Nanotechnology, a joint venture between Imperial College London and University College London, will host the new initiative, bringing together physicists, chemists, and engineers to develop instruments that can quantify properties like electrical conductivity or mechanical strength at the scale of individual molecules. If successful, these new tools could transform how researchers design and test materials for applications such as faster computer chips, more efficient solar cells, or targeted drug delivery systems. The programme is primarily fundamental science—it aims to create new measurement capabilities rather than a specific product. But past work in nanometrology has underpinned breakthroughs in semiconductor manufacturing and medical imaging, and this project could similarly open doors that are not yet visible.

View original technical description
Funds are sought to establish a new UK research capacity that will address key challenges in the development of innovative tools for nanoscale characterisation and metrology. The initiative will be based at the London Centre for Nanotechology (LCN), a joint venture between Imperial College London and University College London, and will help establish an internationally competitive multi-disciplinary activity with strong critical mass at two of the UK's leading research universities. Our programme will deliver high impact fundamental science and will lead to the development of new techniques capable of quantifying target properties with appropriate spatial and temporal resolution.

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Researchers

Gabriel Aeppli (Principal Investigator)

Related Research

Grants with similar aims, by meaning.

FINESSE NanoBio (Fabrication and Imaging of Neon-Etched Structures and Surfaces for Engineering, Nanoscience and Biotechnology)
Next Generation Metrology Driven by Nanophotonics
Nanometrology for Molecular Science, Medicine and Manufacture
Nanoanalysis for Advanced Materials and Healthcare
UK Quantum Technology Hub for Sensors and Metrology

Original classification

Research Grant

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