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Design and Synthesis of a Series of Novel Mixed Borate and Carbonate Halides

机译:一系列新型混合硼酸盐和碳酸卤化物的设计与合成

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摘要

Combining different functional units together has been regarded as the most ideal strategy to design and synthesize new inorganic materials. Based on numerous experiments, it was possible to assemble three kinds of anion groups together and find a series of novel mixed borate and carbonate halides, Rb_9[B_4O_5(OH)_4]_3(CO_3)X·7H_2O (X=Cl, Br, and I) and K_9[B_4O_5(OH)_4]_3(CO_3)X·7H_2O (X=OH and I). Based on the structural template of these compounds, we also obtained the NaRb_6[B_4O_5(OH)_4]_3X (X=OH, I) crystals through replacement of the CO_3 group with the NaO_6 octahedron, which results in the crystal structural changes from P6-2c to R32. In addition, it has been confirmed that the replacement of the CO_3 group by the alkali cation has an influence on the band gaps, according to the experimental results and theoretical calculations. Meanwhile, millimeter-scale crystals of Rb_9[B_4O_5(OH)_4]_3(CO_3)I·7H_2O, K_9[B_4O_5(OH)_4]_3(CO_3)I·7H_2O, K_9[B_4O_5(OH)_4]_3(CO_3)OH·7H_2O and NaRb_6[B_4O_5(OH)_4]_3OH were also obtained after adjusting their growing conditions.
机译:将不同的功能单元组合在一起被认为是设计和综合新的无机材料的最理想策略。基于许多实验,可以组装三种阴离子组,并找到一系列新的混合硼酸硼和碳酸卤化物,RB_9 [B_4O_5(OH)_4] _3(CO_3)X·7H_2O(X = CL,BR,和i)和K_9 [B_4O_5(OH)_4] _3(CO_3)x·7h_2o(x = oh和i)。基于这些化合物的结构模板,我们还通过用NaO_6八面体替换CO_3组获得NARB_6 [B_4O_5(OH)_4] _3x(x = OH,I)晶体,从而导致P6的晶体结构变化-2c到r32。此外,已经证实,根据实验结果和理论计算,通过碱阳离子替换CO_3组对带空隙的影响。同时,RB_9 [B_4O_5(OH)] _3(CO_3)I·7H_2O,K_9 [B_4O_5(OH)_4] _3(CO_3)I·7H_2O,K_9 [B_4O_5(OH)] _3(CO_3)_3(CO_3 )OH·7H_2O和NARB_6 [B_4O_5(OH)_4] _3OH也在调节其生长条件后获得。

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  • 来源
    《Chemistry: A European journal 》 |2017年第43期| 共9页
  • 作者单位

    Key Laboratory of Functional Materials and Devices for Special Environments of CAS Xinjiang Technical Institute of Physics and Chemistry of CAS Xinjiang Key Laboratory of Electronic Information Materials and Devices 40-1 South Beijing Road Urumqi 830011;

    Key Laboratory of Functional Materials and Devices for Special Environments of CAS Xinjiang Technical Institute of Physics and Chemistry of CAS Xinjiang Key Laboratory of Electronic Information Materials and Devices 40-1 South Beijing Road Urumqi 830011;

    Key Laboratory of Functional Materials and Devices for Special Environments of CAS Xinjiang Technical Institute of Physics and Chemistry of CAS Xinjiang Key Laboratory of Electronic Information Materials and Devices 40-1 South Beijing Road Urumqi 830011;

    Key Laboratory of Functional Materials and Devices for Special Environments of CAS Xinjiang Technical Institute of Physics and Chemistry of CAS Xinjiang Key Laboratory of Electronic Information Materials and Devices 40-1 South Beijing Road Urumqi 830011;

    Key Laboratory of Functional Materials and Devices for Special Environments of CAS Xinjiang Technical Institute of Physics and Chemistry of CAS Xinjiang Key Laboratory of Electronic Information Materials and Devices 40-1 South Beijing Road Urumqi 830011;

    Key Laboratory of Functional Materials and Devices for Special Environments of CAS Xinjiang Technical Institute of Physics and Chemistry of CAS Xinjiang Key Laboratory of Electronic Information Materials and Devices 40-1 South Beijing Road Urumqi 830011;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 应用化学 ;
  • 关键词

    mixed borate and carbonate halide; noncentrosymmetric structure; optical property; structure optimization;

    机译:混合硼酸盐和碳酸卤化物;非中心体微调结构;光学性质;结构优化;

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