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Boron: Its Role in Energy‐Related Processes and Applications

机译:硼:其在能源相关工艺和应用中的作用

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摘要

Boron's unique position in the Periodic Table, that is, at the apex of the line separating metals and nonmetals, makes it highly versatile in chemical reactions and applications. Contemporary demand for renewable and clean energy as well as energy‐efficient products has seen boron playing key roles in energy‐related research, such as 1) activating and synthesizing energy‐rich small molecules, 2) storing chemical and electrical energy, and 3) converting electrical energy into light. These applications are fundamentally associated with boron's unique characteristics, such as its electron‐deficiency and the availability of an unoccupied p orbital, which allow the formation of a myriad of compounds with a wide range of chemical and physical properties. For example, boron's ability to achieve a full octet of electrons with four covalent bonds and a negative charge has led to the synthesis of a wide variety of borate anions of high chemical and electrochemical stability—in particular, weakly coordinating anions. This Review summarizes recent advances in the study of boron compounds for energy‐related processes and applications.
机译:硼在元素周期表中的独特位置,即金属和非金属分离线的顶点,使其在化学反应和应用中具有很高的通用性。硼在当代对可再生和清洁能源以及节能产品的需求中已在与能源有关的研究中发挥着关键作用,例如1)激活并合成富含能量的小分子; 2)存储化学和电能; 3)将电能转化为光。这些应用从根本上与硼的独特特征相关,例如硼的电子缺乏和未占据的p轨道的可用性,这允许形成具有广泛化学和物理性质的多种化合物。例如,硼具有四个共价键和负电荷的完整电子八位位组的能力导致合成了多种具有高化学和电化学稳定性的硼酸根阴离子,特别是弱配位阴离子。这篇综述总结了用于与能源有关的过程和应用的硼化合物研究的最新进展。

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