Tuning paradigm of external stimuli driven electronic, optical, and magnetic properties in Hybrid Perovskites and Metal Organic Complexes
Hrishit Banerjee, Jagjit Kaur, M. K. Nazeeruddin, and Sudip, Chakraborty

TL;DR
This review explores how external stimuli like pressure, temperature, and light can tune the electronic, optical, and magnetic properties of hybrid perovskites and metal organic complexes, highlighting mechanisms, experimental insights, and potential applications.
Contribution
It provides a comprehensive overview of the theoretical mechanisms and experimental literature on stimuli-induced property tuning in hybrid perovskites and metal organic complexes, with future application insights.
Findings
Stimuli induce spin transitions and optical/magnetic responses.
Hysteresis effects enable memory and optical switching.
Pressure tuning leads to piezochromic optical properties.
Abstract
We have witnessed a wide range of theoretical as well as experimental investigations to envisage external stimuli induced changes in electronic, optical, and magnetic properties in the metal organic complexes, while hybrid perovskites have recently joined this exciting league of explorations. The flexible organic linkers in such complexes are ideal for triggering not only spin transitions but also a plethora of different responses under the influence of external stimuli like pressure, temperature, and light. A diverse range of applications particularly in the field of optoelectronics, spintronics, and energy scavenging have been manifested. Hysteresis associated with light induced transitions and spin-crossover governed by pressure and temperature are promising phenomena for the design principles behind memory devices and optical switches. Pressure induced optical properties tuning or…
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Taxonomy
TopicsPerovskite Materials and Applications · Organic and Molecular Conductors Research · Organic Light-Emitting Diodes Research
