首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Germanates Built from Ge_(10)(O, OH)_(27-28) and Ge7(O, OHf F)_(19) Secondary Building Units: From Systematic Study of Reported Compounds to Rational Design of Novel Structures
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Germanates Built from Ge_(10)(O, OH)_(27-28) and Ge7(O, OHf F)_(19) Secondary Building Units: From Systematic Study of Reported Compounds to Rational Design of Novel Structures

机译:由Ge_(10)(O,OH)_(27-28)和Ge7(O,OHf F)_(19)二级建筑单元建造的日耳曼语:从报告的化合物的系统研究到新颖结构的合理设计

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摘要

Design of novel porous compounds is one of the fastest-growing fields of materials chemistry due to the broad range of applications including catalysis, adsorption, and separation. Open-framework germanates have shown large structure diversity and can form structures with extra-large pores. A systematic study of the structural features of the reported germanates is a key for the design of novel porous germanates. In this work, the topological study and classification of allknown germanates that are built from Ge_(10)(O, OH)_(27-28) (Ge_(10)) or Ge7(O, OH, F)_(19) (Ge7) secondary building units, has been undertaken. We have demonstrated that the combination of topological technique and data mining provides new insights into structural chemistry of a group of compounds. We proposed an efficient and general strategy for prediction of novel structures in germanates and other chemical systems.
机译:由于包括催化,吸附和分离在内的广泛应用,新型多孔化合物的设计是材料化学发展最快的领域之一。开放式结构的德国人显示出很大的结构多样性,并且可以形成具有超大孔的结构。对报道的锗酸盐的结构特征进行系统研究是设计新型多孔锗酸盐的关键。在这项工作中,对从Ge_(10)(O,OH)_(27-28)(Ge_(10))或Ge7(O,OH,F)_(19)构造的所有已知德国人进行拓扑研究和分类(Ge7)二级建筑单位已经承接。我们已经证明,拓扑技术和数据挖掘的结合为一组化合物的结构化学提供了新的见解。我们提出了一种有效的通用策略,用于预测德国人和其他化学系统中的新型结构。

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