Completed Cells, Biochemistry & Physiology Materials & Manufacturing

Diamond Phase III

In plain English

AI plain-English summary

The Diamond Light Source, a synchrotron the size of a football stadium, is adding ten new experimental stations—called beamlines—to its arsenal, bringing the total to 32. This matters because a synchrotron acts like a super-powered microscope, firing intense beams of light—from infrared to hard X-rays—to reveal the atomic and molecular structure of almost anything. The UK’s existing beamlines are oversubscribed, particularly for structural biology and pharmaceutical drug design. The new beamlines will specifically address this bottleneck: at least six will be dedicated to macromolecular crystallography, the technique used to map the 3D shapes of proteins and other biological molecules. Another suite of imaging beamlines will cover life sciences, from cells to tissues, while others probe electronic structure in materials. If this succeeds, the impact will be felt across industries that rarely make headlines. Pharmaceutical companies will get faster, automated access to the data needed to design new drugs. Engineers and materials scientists will study battery components or catalysts at atomic resolution. Even cultural heritage researchers will use the beams to analyse ancient artefacts without damaging them. The expansion is designed to keep the UK competitive in fundamental science and industrial R&D, quietly underpinning everything from medicine to manufacturing.

View original technical description
Phase III of the construction of the Diamond Light Source provides for the design, procurement, construction and commissioning of ten state-of-the-art beamlines. Together with the Phase I and II beamlines Diamond will then offer 32 beamlines supporting science and industry from Engineering to Cell Biology and Cultural Heritage to the Pharmaceutical Industry. This provision will offer: A minimum of 6 macromolecular crystallography beamlines in total to support the strong research base in the UK in the area of structural biology and the demand from the pharmaceutical industry. A suite of world-class imaging beamlines that cover the range from the IR to the hard X ray. These will include beamlines dedicated to the life-sciences and will greatly increase the reach of SR to address fundamental questions in the life and physical sciences. World leading beamlines for the study of electronic structure. Capacity to meet the growing demand from industry. A major driver here is to provide the possibility for highly efficient use of SR by automation. Capacity to respond to emerging areas of science. This will be ensured by our open process of selecting beamlines, together with focussed meetings with key scientific communities.

View the original record at the funder ↗

Researchers

Gerhard Materlik (EPMC Awardee)

Related Research

Grants with similar aims, by meaning.

Diamond Phase 2
Advancing Life Sciences with Diamond-II
Phase modulation technology for X-ray imaging
New facilities for studying single crystals under a range of non-ambient conditions using SR radiation
Provision of the MAD/XAFS facility for the UK structural biology community

Original classification

Strategic Award - Science

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