Advanced Experimental Methods in Physical Chemistry

Further contributions are invited on attosecond and sub-10-femtosecond pulse generation, coherent multidimensional spectroscopy, and time-resolved X-ray diffraction at free-electron laser facilities. Sessions may address cryogenic electron microscopy, super-resolution fluorescence imaging, tip-enhanced Raman spectroscopy, and scanning probe methods capable of resolving single-molecule reactivity. Discussion will extend to microfluidic and droplet-based reaction screening, combinatorial synthesis, and high-throughput electrochemical and catalytic testing platforms. Automation, laboratory information management, and instrument–model feedback loops for adaptive experimentation will also be considered, together with strategies for improving inter-laboratory reproducibility and reporting standards. The expansion of advanced experimentation into previously inaccessible regimes will be demonstrated, covering ultrafast charge-transfer dynamics, single-particle catalysis, operando battery diagnostics, and in vivo molecular imaging, with attention to data reduction pipelines and open-source analysis software.

 

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