Stephen P. Thompson

Diamond Light Source

Papers

2

Total Citations

98

H-Index

2

About

Stephen P. Thompson is a leading figure in high-throughput materials discovery and synchrotron-based structural analysis. His research centers on developing rapid, automated methods for synthesizing and characterizing novel nanoceramic materials, with a particular focus on complex oxide systems. Thompson’s most impactful contribution is the invention of the High-Throughput Continuous Hydrothermal (HiTCH) flow synthesis reactor, which enabled the creation of a 66-sample nanoparticle library—an entire phase diagram of nanocrystalline Ce(x)Zr(y)Y(z)O(2-delta)—in under 12 hours. This breakthrough, published in 2009 and garnering 70 citations, revolutionized the speed and efficiency of materials exploration. He further advanced the field by designing high-throughput powder diffraction capabilities on beamline I11 at Diamond Light Source, as detailed in his 2010 paper (28 citations). This work integrated high-brightness X-ray beams, multi-analyser detectors, and fast data-acquisition procedures to deliver high-quality structural data with unprecedented throughput. Thompson’s innovations have significantly accelerated the pace of nanoceramic research, enabling rapid screening of composition-structure-property relationships. His achievements underscore a commitment to pushing the boundaries of experimental materials science, making him a pivotal figure for students and researchers interested in high-throughput methodologies and synchrotron techniques.

Research Focus

Key Achievements

2
H-Index
2
Papers
98
Total Citations
49
Avg Citations/Paper
🏆 Most Cited Paper
High-Throughput Continuous Hydrothermal Synthesis of an Entire Nanoceramic Phase Diagram
70 citations · 2009
📈 Most Prolific Year: 2009 (1 Papers)
🤝 Key Collaborators: 18
🏛 Institutions: Diamond Light Source

Top Papers

  1. 1
  2. 2

Key Collaborators

Contact & Links

Available for collaboration
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