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首页> 外文期刊>Science Advances >A fivefold UO22+ node is a path to dodecagonal quasicrystal approximants in coordination polymers
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A fivefold UO22+ node is a path to dodecagonal quasicrystal approximants in coordination polymers

机译:五倍UO22 +节点是协调聚合物中的十二跨方形拟流术近似值的路径

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Aperiodic formations continue to focus interest in areas ranging from advanced scientific theories to practical everyday applications. Starting from diverse and tightly bonded intermetallic compounds, this world showed an important breakthrough toward the so-called soft systems of meso/macroscale: liquid crystals, thin films, polymers, proteins, etc. This work opens a route for making bulk quasicrystals (QC) in an unprecedented but very common area, with molecular ligands. Since these systems are, to a large extent, transparent, they extend the possible areas of QC application to previously unreachable corners, e.g., photonics. We combined efficient bridging ligands with uranyl pentagonal bonding centers and, unexpectedly, brought the unique attributes of f-element coordination chemistry to an interdisciplinary area of aperiodic formations. Taking advantage of the planar coordination of uranyl ions, we were able to direct the structure expansion solely in two directions with a characteristic snub square tiling, a predicted but previously unobtainable dodecagonal approximant.
机译:非周期性的形成继续关注从先进科学理论到实际日常应用的地区的兴趣。从多种和紧密粘合的金属间化合物开始,朝着所谓的Meso / Macroscale的软系统,液晶,薄膜,聚合物,蛋白等。这项工作开辟了制作散装拟矩形的途径(QC )在一个前所未有的但非常普遍的区域,分子配体。由于这些系统在很大程度上透明地将QC应用的可能区域扩展到先前无法到达的角落,例如光子学。我们将高效的桥接配体与铀酰五边形粘合中心结合起来,意外地将F元素协调化学的独特属性带到了非周期性地层的跨性面积。利用铀酰离子的平面协调,我们能够仅以两个方向引导结构膨胀,其中特征怠慢方形平铺,预测但以前无法获得的十二角形近似。

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