Dipartimento di Matematica e Fisica "Ennio De Giorgi", Università del Salento, Via per Arnesano, 73100 Lecce, Italy.
Institute of Electronic Structure and Laser, Foundation for Research and Technology-Hellas, P.O. Box 1385, Heraklion, 71110 Crete, Greece.
Molecules. 2021 Jan 29;26(3):705. doi: 10.3390/molecules26030705.
Lead halide perovskites are currently widely investigated as active materials in photonic and optoelectronic devices. While the lack of long term stability actually limits their application to commercial devices, several experiments demonstrated that beyond the irreversible variation of the material properties due to degradation, several possibilities exist to reversibly modulate the perovskite characteristics by acting on the environmental conditions. These results clear the way to possible applications of lead halide perovskites to resistive and optical sensors. In this review we will describe the current state of the art of the comprehension of the environmental effects on the optical and electronic properties of lead halide perovskites, and of the exploitation of these results for the development of perovskite-based sensors.
卤铅钙钛矿目前被广泛研究作为光子学和光电设备中的活性材料。虽然长期稳定性的缺乏实际上限制了它们在商业设备中的应用,但是一些实验证明,除了由于降解导致的材料性质不可逆变化之外,通过作用于环境条件,存在几种可以使钙钛矿特性可逆调制的可能性。这些结果为卤铅钙钛矿在电阻和光学传感器中的应用铺平了道路。在这篇综述中,我们将描述对环境效应对卤铅钙钛矿的光学和电子性质的影响的理解的最新进展,以及对这些结果的利用以开发基于钙钛矿的传感器。