In situ and operando optical microscopy and spectroscopy: investigating perovskite optoelectronic devices at work
by PicoQuant · Physics WorldJoin the audience for a live webinar at 4 p.m. GMT/5 p.m. CET on 3 November 2026 Learn how optical microscopy reveals local processes in working perovskite optoelectronic devices
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The performance of optoelectronic materials and devices relies on carrier transport, recombination, ion migration and phase segregation. They unfold on length scales from nanometers to micrometers and timescales from picoseconds to hours. Conventional characterization averages over this heterogeneity and rarely captures these events in operational devices.
Optical microscopy and spectroscopy can recover this hidden picture. They convert local material function directly into optical contrast, and that contrast can be resolved across the length and time scales where the function happens.
In this webinar, Dr Sudipta Seth will talk about advanced optical microscopy and spectroscopy that interrogate halide perovskite materials and corresponding optoelectronic devices under relevant in situ and operando conditions. This approach uncovers the local fields, transport bottlenecks, and defect chemistry that set solar cell performance. He will show how these local optical signatures translate into a mechanistic understanding of device operation, and how that understanding feeds back into the design of better probes, interfaces, defects and devices.
The talk is aimed equally at materials scientists curious about what happens inside their samples and at microscopists and spectroscopists looking for new problems suited to their tools.
Certificate of attendance will be awarded upon completion of the webinar.
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Sudipta Seth is a research associate at KU Leuven, Belgium, where he conducts advanced research at the intersection of materials chemistry, optoelectronic devices and spectroscopy through the development of innovative microscopy methodologies. He leads the nanoscale device spectroscopy research line at Hofkens Laboratory. He completed his PhD at the University of Hyderabad and subsequently worked as a postdoctoral fellow at Lund University and as a visiting junior fellow at the Tokyo Institute of Technology. His work integrates single-particle spectroscopy, super-resolution and nanoscale microscopy and ultrafast spectroscopy to investigate fundamental photophysics in semiconductor materials and optoelectronic devices. He has received several academic fellowships, including INSPIRE-SHE (India), Wenner-Gren Postdoctoral Fellowship (Sweden), FWO Research Stay Abroad (Belgium), and Marie Sklodowska-Curie Postdoctoral Fellowship (European Commission).