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首页> 外文期刊>Angewandte Chemie >Shape Rememorization of an Organosuperelastic Crystal through Superelasticity-Ferroelasticity Interconversion
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Shape Rememorization of an Organosuperelastic Crystal through Superelasticity-Ferroelasticity Interconversion

机译:通过超弹性 - 铁弹性互联形状求解有机核晶体

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摘要

As altering permanent shapes without loss of material function is of practical importance for material molding, especially for elastic materials, shape-rememorization ability would enhance the utility of elastic crystalline materials. Since diffusionless plastic deformability can preserve the crystallinity of materials, the interconversion of diffusionless mechanical deformability between superelasticity and ferroelasticity could enable shape rememorization of superelastic single crystals. This study demonstrates the shape rememorization of an organosuperelastic single crystal of 1,4-dicyanobenzene through time-reversible interconversion of superelasticity-ferroelasticity relaxation by holding the mechanically twinned crystal without heating. The shape-rememorization ability of the organosuperelastic crystal indicates the compatibility of superelasticity (antiferroelasticity) and ferroelasticity as well as the intrinsic workability of organic crystalline materials capable of recovering their crystal functions under mild conditions.
机译:由于改变无材料功能的永久形状对于材料成型具有实际重要性,特别是对于弹性材料,形状 - 纪念能力将增强弹性结晶材料的效用。由于扩散塑料可变形性可以保持材料的结晶度,因此膨胀性和铁弹性之间的扩散机械变形性的互连可以使超弹性单晶的形状求解。该研究通过在不加热的情况下保持机械孪晶晶体,通过时间可逆互连的时间可逆互连来证明1,4-二氰基苯的有机血糖单晶的形状求解。有机弹性晶体的形状 - 求解能力表明了超弹性(抗甲弹性)和铁弹性的兼容性以及能够在温和条件下恢复其晶体功能的有机晶体材料的内在可加工性。

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