Imaging carrier transport properties in halide perovskites using time-resolved optical microscopy
G\'eraud Delport, Stuart Macpherson, Samuel D. Stranks

TL;DR
This paper reviews how time-resolved optical microscopy advances understanding of charge carrier behavior in halide perovskites, highlighting recent technical developments and strategies for comprehensive analysis of their photophysical properties.
Contribution
It provides an overview of recent progress in applying time-resolved optical microscopy to study charge transport in halide perovskites, emphasizing new technical methods and integration strategies.
Findings
Time-resolved optical microscopy reveals detailed charge carrier dynamics.
Recent technical developments overcome previous experimental limitations.
Strategies for combining microscopy with other techniques enhance understanding.
Abstract
Halide perovskites have remarkable properties for relatively crudely processed semiconductors, including large optical absorption coefficients and long charge carrier lifetimes. Thanks to such properties, these materials are now competing with established technologies for use in cost-effective and efficient light harvesting and light emitting devices. Nevertheless, our fundamental understanding of the behaviour of charge carriers in these materials particularly on the nano to micro scale has on the whole lagged behind the empirical device performances. Such understanding is essential to control charge carriers, exploit new device structures, and push devices to their performance limits. Among other tools, optical microscopy and spectroscopic techniques have revealed rich information about charge carrier recombination and transport on important length scales. In this Progress Report, we…
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