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首页> 外文期刊>Angewandte Chemie >Molecular Rotors in Porous Organic Frameworks
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Molecular Rotors in Porous Organic Frameworks

机译:多孔有机骨架中的分子转子

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摘要

Porous organic frameworks perform a variety of functions, owing to their extremely large surface areas, but the dynamics of the structural elements have never been explored. Our discovery of ultra-fast molecular rotors (106 Hz at 225 K) in their architectures allows us to look at them from a new perspective. The constructive elements are robust struts and rapid rotors, resulting in a dynamic material whose motion can be frozen or released at will. The rotational motion can be actively regulated in response to guests. As the temperature is increased, the rotors spin ever faster, approaching free-rotational diffusion at 550 K. The unusual combination of remarkable nanoporosity with fast dynamics is intriguing for engineering oscillating dipoles and producing responsive materials with switchable ferroelectricity, and for applications spanning from sensors to actuators, which capture and release chemicals on command.
机译:多孔有机骨架由于其非常大的表面积而具有多种功能,但从未探索结构元素的动力学。我们在其结构中发现了超快速分子转子(在225 K时为106 Hz),因此我们可以从一个新的角度对其进行研究。建设性的要素是坚固的支柱和快速的转子,从而产生一种动态材料,其运动可以随意冻结或释放。可以响应客人积极地调节旋转运动。随着温度的升高,转子的旋转速度越来越快,在550 K时接近自由旋转扩散。纳米多孔性与快速动力学的不寻常结合对于工程振荡偶极子和生产具有可切换铁电性的响应性材料以及从传感器到应用的吸引人到执行器,执行器根据指令捕获并释放化学物质。

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