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首页> 外文期刊>Inorganic Chemistry Communications >Tetraphenylmethane and tetraphenylsilane as building units of coordination polymers and supramolecular networks - A focus on tetraphosphonates
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Tetraphenylmethane and tetraphenylsilane as building units of coordination polymers and supramolecular networks - A focus on tetraphosphonates

机译:四苯基甲烷和四苯基硅烷作为配位聚合物和超分子网络的建筑单元 - 一种对四膦酸盐的关注

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In this work are explored opportunities for supramolecular and coordination chemistry that arise from a combination of a phosphonic functional group with tetrahedrally-shaped aromatic units: tetraphenylmethane (TPM) and tetraphenylsilane (TPSi). To provide a complete overview of TPM and TPSi-based tetraphosphonate materials, this paper has been divided into three distinct parts. In the first part are brought together and evaluated most convenient synthetic methods that can be employed for the preparation of TPM and TPSi aromatic scaffolds and of their corresponding tetrabromo derivatives (TPM-Br-4 and TPSi-Br-4). Further, possible routes to tetrakis(4-phosphonophenyl)methane (TPPM) and tetrakis(4-phosphonophenyl)silane (TPPSi) are discussed, with particular attention being paid to the palladium and nickel-catalyzed phosphonylation reactions. The second part of the literature survey is devoted to the overview of useful functionalities of metal-organic frameworks (MOFs) and coordination polymers (CPs) based on TPPM and TPPSi. This part starts with the description of various crystal engineering approaches towards the preparation of porous metal phosphonates - a rare class of materials that combines gas sorption property and exceptional thermal and chemical resistance. Next, copper(II) and zirconium phosphonates constructed from TPPSi are highlighted as robust heterogenous catalysts for cycloaddition of carbon dioxide to epoxides and epoxide ring-opening reactions. Further, TPPM-based diester CPs with cobalt(II) ions have been investigated in terms of their nonlinear optical properties, serving as models for studies of spectrally resolved second harmonic generation (SHG) and third harmonic generation (THG). In the third, final part of this work are overviewed efforts of several research groups on the elucidation of solid-state assembly and supramolecular chemistry of TPPM and TPPSi tectons. Here, the emphasis is being placed on their packing preferences, hydrogen bonding, Hirshfeld surface properties and phenyl embrace interactions. (C) 2017 Elsevier B.V. All rights reserved.
机译:在这项工作中,探讨了来自具有四面体芳族单元的膦官能团的组合产生的超分子和配位化学的机会:四苯基甲烷(TPM)和四苯基硅烷(TPSI)。为了提供TPM和基于TPSI的四膦酸盐材料的完整概述,本文已分为三个不同的零件。在第一部分中,将最方便的合成方法评估可用于制备TPM和TPSI芳族支架和它们相应的Tetrabromo衍生物(TPM-BR-4和TPSI-BR-4)。此外,讨论了四(4-膦酰基)甲烷(TPPM)和四(4-膦酰基)硅烷(TPPSI)的可能途径,特别注意钯和镍催化的膦化反应。文献调查的第二部分旨在基于TPPM和TPPSI的金属 - 有机骨架(MOF)和配位聚合物(CPS)的有用功能概述。该部分从各种晶体工程方法的描述开始,用于制备多孔金属膦酸盐 - 一种结合气体吸附性能和卓越的热和耐化学性的稀有材料。接下来,从TPPSI构建的铜(II)和锆膦酸官突出显示为鲁棒的异源催化剂,用于环形加入二氧化碳与环氧化物和环氧化环开环反应。此外,已经在其非线性光学性质方面研究了基于TPPM的二酯CPS,其具有钴(II)离子,用作分辨的二次谐波产生(SHG)和第三次谐波产生(THG)的研究模型。在第三,这项工作的最后一部分是若干研究小组的概括努力,即阐明了TPPM和TPPSI构件的固态组件和超分子化学。这里,重点在于它们的包装偏好,氢键,HiRshfeld表面性质和苯基包含相互作用。 (c)2017 Elsevier B.v.保留所有权利。

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