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New Developments in the Synthesis, Structure, and Applications of Borophosphates and Metalloborophosphates

机译:硼磷酸盐和金属硼磷酸盐的合成,结构和应用的新进展

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An overview about the recent key developments of borophosphate chemistry since 2007 is given. The structural chemistry (B:P ratio, fundamental building units (FBUs), dimensionality and metal coordination), possible physical, and optical and chemical properties are discussed in detail in terms of materials obtained by traditional solid-state reactions, flux methods, and hydrothermal and ionothermal reactions. Borophosphates (BPOs) exhibit a tremendous structural variety. Which structure is formed depends critically on the chosen starting materials and synthetic conditions. For example, for metalloborophosphates (MBPOs) changing the metal-precursor can result in the formation of a new BPO. MBPOs containing chains or extended networks of interconnected transition metal-oxide polyhedra exhibit remarkable magnetic coupling schemes and electronic behavior aside from interesting optical behavior and catalytic properties. The exploration of novel fundamental building units (FBUs), such as FBUs with P-O-P bonds and two-dimensional mixed-coordinated anionic partial structures, that have not been observed previously advocates the great potential in designing novel functional BPOs for advanced applications. While many BPOs initially obtained from conventional synthetic methods can be prepared by hydrothermal synthesis, it has recently been realized that BPOs obtained by ionothermal methods often could not be synthesized by conventional synthetic methods. Thus, novel synthetic approaches offer access to new materials.
机译:自2007年以来,概述了硼磷酸盐化学的最新关键发展。结构化学(B:P比率,基本建筑单元(FBU),尺寸和金属配位),可能的物理,光学和化学性质将通过传统的固态反应,助熔剂方法和水热和离子热反应。硼磷酸盐(BPO)具有巨大的结构多样性。形成哪种结构关键取决于所选的起始原料和合成条件。例如,对于金属硼磷酸盐(MBPO),更改金属前体可能导致形成新的BPO。包含互连过渡金属氧化物多面体的链或扩展网络的MBPO除了令人关注的光学性能和催化性能外,还具有出色的磁耦合方案和电子性能。对新颖的基本建筑单元(FBU)的探索,例如以前没有观察到的具有P-O-P键和二维混合配位的阴离子部分结构的FBU,提倡为高级应用设计新颖的功能性BPO的巨大潜力。虽然可以通过水热合成来制备最初从常规合成方法获得的许多BPO,但是最近已经认识到,通过电热法获得的BPO经常不能通过常规合成方法来合成。因此,新颖的合成方法提供了获得新材料的途径。

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