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Smart composite films of nanometric thickness based on copper–iodine coordination polymers. Toward sensors

机译:基于铜-碘配位聚合物的纳米厚度智能复合膜。朝传感器

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摘要

One-pot reactions between CuI and methyl or methyl 2-amino-isonicotinate give rise to the formation of two coordination polymers (CPs) based on double zig–zag Cu2I2 chains. The presence of a NH2 group in the isonicotinate ligand produces different supramolecular interactions affecting the Cu–Cu distances and symmetry of the Cu2I2 chains. These structural variations significantly modulate their physical properties. Thus, both CPs are semiconductors and also show reversible thermo/mechanoluminescence. X-ray diffraction studies carried out under different temperature and pressure conditions in combination with theoretical calculations have been used to rationalize the multi-stimuli-responsive properties. Importantly, a bottom-up procedure based on fast precipitation leads to nanofibers of both CPs. The dimensions of these nanofibres enable the preparation of thermo/mechanochromic film composites with polyvinylidene difluoride. These films are tens of nanometers in thickness while being centimeters in length, representing smaller thicknesses so far reported for thin-film composites. This nanomaterial integration of CPs could represent a source of alternative nanomaterials for opto-electronic device fabrication.
机译:CuI与2-氨基异烟酸甲酯或甲基或甲基甲基一锅法反应形成基于双之字形Cu2I2链的两个配位聚合物(CP)的形成。异烟酸酯配体中存在NH2基团会产生不同的超分子相互作用,从而影响Cu-Cu的距离和Cu2I2链的对称性。这些结构变化极大地调节了它们的物理性能。因此,两个CP都是半导体,并且还显示出可逆的热/机械发光。在不同温度和压力条件下进行的X射线衍射研究与理论计算相结合,已被用于合理化多重刺激响应特性。重要的是,基于快速沉淀的自下而上的过程会导致两个CP的纳米纤维。这些纳米纤维的尺寸使得能够制备具有聚偏二氟乙烯的热/致变色膜复合材料。这些膜的厚度为几十纳米,而长度为厘米,代表迄今报道的薄膜复合材料的较小厚度。 CP的这种纳米材料集成可以代表用于光电器件制造的替代纳米材料的来源。

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