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Near-room-temperature martensitic actuation profited from one-dimensional hybrid perovskite structure.


ABSTRACT: Martensitic transformation, usually accompanied by ferroelastic and thermoelastic behaviors, is an interesting and useful mechanical-related property upon external stimuli. For molecular crystals, however, martensitic systems to show reversible stimuli-actuation behaviors are still limited because of a lack of designability and frequent crystal collapse due to large stress releases during the transformations. Here, a one-dimensional hybrid perovskite semiconductor (NMEA)PbI3 (NMEA = N-methylethylammonium) was prepared by following a dimensionality reduction design principle. The crystal undergoes reversible ferroelastic and thermoelastic martensitic transformations, which are attributed to weak intermolecular interactions among the chains that easily trigger the interchain shearing movement. The actuation behavior occurring during the phase transition is very close to room temperature and demonstrated to behave as a mechanical actuator for switching. This work provides an effective approach to designing molecular actuators with promising applications in next-generation intelligence devices.

SUBMITTER: Liang BD 

PROVIDER: S-EPMC9633747 | biostudies-literature | 2022 Nov

REPOSITORIES: biostudies-literature

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Near-room-temperature martensitic actuation profited from one-dimensional hybrid perovskite structure.

Liang Bei-Dou BD   Fan Chang-Chun CC   Liu Cheng-Dong CD   Chai Chao-Yang CY   Han Xiang-Bin XB   Zhang Wen W  

Nature communications 20221103 1


Martensitic transformation, usually accompanied by ferroelastic and thermoelastic behaviors, is an interesting and useful mechanical-related property upon external stimuli. For molecular crystals, however, martensitic systems to show reversible stimuli-actuation behaviors are still limited because of a lack of designability and frequent crystal collapse due to large stress releases during the transformations. Here, a one-dimensional hybrid perovskite semiconductor (NMEA)PbI<sub>3</sub> (NMEA = N  ...[more]

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