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Borates A Novel Twofold Interpenetrating 3D Diamondoid Borate Framework Constructed from B4 and B5 Clusters

机译:寄生一个由B4和B5簇构建的新型双重互穿3D钻石硼酸盐框架

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摘要

Borates with extended structures and interpenetrating system built from different types of cluster units are extremely rare. In this paper, we report a novel mixed-alkali-metal borate Na3 Li2[B4O7][B5O8(OH)2] (1) synthesized under solvothermal conditions, showing a three-dimensional twofold interpenetrating system constructed from two types of oxoboron clusters (B4O9 and B5O10(OH)2) setting as the first example in borates. And 1 also features an intricate 3-D Li-O-Na cationic network. In this work, we made a detailed comparison with other reported borates from 1-D chain, 2-D layer to 3-D framework containing B4 and B5 clusters and further demonstrated that such 3-D framework of 1 can be achieved by controlling the alkalinity of solution to prompt the concentration of two different oxoboron clusters with rich terminal hydroxyl groups together. Indeed, it can be regarded as a good interpretation of hydrolysiscondensation processes in dimensional transformation of borates making it possible for the rational design of various structural borates in the future. Moreover, 1 displays fluorescence emission around 472 nm, making it an appropriate candidate for optoelectronic applications.
机译:具有扩展结构和由不同类型的群集单元构建的扩展结构和互穿系统非常罕见。在本文中,我们报告了一种新型的混合烷酸 - 金属硼酸盐Na3 li2 [B4O7] [B5O8(OH)2](1)在溶剂热条件下合成的,显示了由两种类型的OxoBoron簇构建的三维两倍的间渗透系统( B4O9和B5O10(OH)2)设置为硼酸盐中的第一个示例。 1还具有复杂的3-D Li-O-NA阳离子网络。在这项工作中,我们与来自1-D链,2-D层到包含B4和B5群集的3-D框架的其他报告的硼酸盐进行了详细的比较,并进一步证明了可以通过控制1架1的3-D框架来实现。溶液的碱度,以促使两个不同的氧化氧簇浓度,并将富含末端羟基的浓度浓度。的确,它可以被认为是对硼酸盐尺寸转化中水解敏化过程的良好解释,这使得将来的各种结构硼酸盐的理性设计成为可能。此外,1显示了472 nm左右的荧光发射,使其成为光电应用的合适候选者。

著录项

  • 来源
    《Chemistry Select》 |2017年第19期|5311-5315|共5页
  • 作者单位

    State Key Laboratory of Structural Chemistry Fujian Institute of Research on the Structure of Matter Chinese Academy of Sciences Fuzhou, Fujian 350002 (China);

    MOE Key Laboratory of Cluster Science School of Chemistry and Chemical Engineering Beijing Institute of Technology Beijing 100081 (China);

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  • 原文格式 PDF
  • 正文语种 英语
  • 中图分类 Online;
  • 关键词

    Interpenetrating networks; borates; fit and proper personHYDROTHERMAL SYNTHESIS;

    机译:互穿网络;硼酸盐;适合和适当的人氢化合成;
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