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Acid-base centers and acid-base scales in ionic solids

机译:离子固体中的酸碱中心和酸碱垢

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摘要

For the case of ionic crystals it is shown to be most straightforward and consistent to define acidity/basicity by the (electro-)chemical potential of the respective ion, in a similar fashion to the way that the Fermi level (i.e., electrochemical potential of the electron) characterizes the redox state. The isomorphy is explicitly expressed by using the energy-level diagrams introduced for electrons in semiconductor physics. Without having to make further assumptions it is possible 1) to compare acidity/basicity between different solids, 2) to link internal and surface acidity/basicity, and 3) to establish acidity/basicity scales for ionic solids. The point defects are revealed to be the natural acidic and basic elementary centers. and associates between them to be the internal acids/bases exchanging these elementary centers. Even though acidity/basicity is an overall property of the solid, the number of point defects (if dilute) directly represents these properties in the same way as H+ or OH- accomplish this for aqueous solutions. [References: 33]
机译:对于离子晶体而言,以与费米能级(即电化学势)相似的方式,通过相应离子的(电)化学势来定义酸度/碱度是最直接,最一致的方法。电子)表征了氧化还原状态。通过使用在半导体物理学中为电子引入的能级图来明确表示同构。无需做进一步的假设,有可能1)比较不同固体之间的酸度/碱度,2)连接内部和表面酸度/碱度,以及3)建立离子固体的酸度/碱度标度。发现点缺陷是天然的酸性和碱性基本中心。它们之间的缔合是交换这些基本中心的内部酸/碱。即使酸度/碱度是固体的整体性质,点缺陷的数量(如果稀)也可以直接代表这些性质,就像水溶液中的H +或OH-一样。 [参考:33]

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