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首页> 外文期刊>Angewandte Chemie >Room-Temperature Bistability in a Ni-Fe Chain: Electron Transfer Controlled by Temperature, Pressure, Light, and Humidity
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Room-Temperature Bistability in a Ni-Fe Chain: Electron Transfer Controlled by Temperature, Pressure, Light, and Humidity

机译:在Ni-Fe链中的室温双稳态:由温度,压力,光和湿度控制的电子转移

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摘要

Bistable and stimuli-responsive molecule-based materials are promising candidates for the development of molecular switches and sensors for future technologies. The CN-bridged {NH4[Ni(cyclam)][Fe(CN)(6)].5 H2O}(n) chain exists in two valence states: Ni-II-Fe-III (1(HT)) and Ni-III-Fe-II (1(LT)) and shows unique multiresponsivity under ambient conditions to various stimuli, including temperature, pressure, light, and humidity, which generate measurable response in the form of significant changes in magnetic susceptibility and color. The electron-transfer phase transition 1(LT)<-> 1(HT) shows room-temperature thermal hysteresis, can be induced by irradiation, and shows high sensitivity to small applied pressure, which shifts it to higher temperatures. Additionally, it can be reversibly turned off by dehydration to the {NH4[Ni-II(cyclam)][Fe-III(CN)(6)]}(n) (1 d) phase, which features the Ni-II-Fe-III valence state over the whole temperature range, but responds to pressure by yielding Ni-III-Fe-II above 1.06 GPa.
机译:双稳态和刺激响应性分子材料是未来技术中分子开关和传感器的潜在发展方向。CN桥联的{NH4[Ni(cyclam)][Fe(CN)(6)].5 H2O}(n)链以两种价态存在:Ni II Fe III(1(HT))和Ni III Fe II(1(LT)),并且在环境条件下对各种刺激(包括温度、压力、光和湿度)表现出独特的多响应性,这些刺激以磁化率和颜色的显著变化的形式产生可测量的响应。电子转移相变1(LT)<->1(HT)表现出室温热滞后,可由辐照引起,并且对小的施加压力表现出高灵敏度,从而将其转移到更高的温度。此外,它可以通过脱水到{NH4[Ni II(cyclam)][Fe III(CN)(6)]}(n)(1 d)相可逆地关闭,该相在整个温度范围内具有Ni II-Fe III价态,但通过产生高于1.06 GPa的Ni III-Fe II来响应压力。

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