Proton Conductivity: Materials and Applications

质子 质子输运 化学物理 电导率 化学 电化学 热传导 材料科学 物理化学 电极 物理 核物理学 复合材料
作者
Klaus‐Dieter Kreuer
出处
期刊:Chemistry of Materials [American Chemical Society]
卷期号:8 (3): 610-641 被引量:2510
标识
DOI:10.1021/cm950192a
摘要

In this review the phenomenon of proton conductivity in materials and the elements of proton conduction mechanisms proton transfer, structural reorganization and diffusional motion of extended moieties are discussed with special emphasis on proton chemistry. This is characterized by a strong proton localization within the valence electron density of electronegative species (e.g., oxygen, nitrogen) and self-localization effects due to solvent interactions which allows for significant proton diffusivities only when assisted by the dynamics of the proton environment in Grotthuss and vehicle type mechanisms. In systems with high proton density, proton/proton interactions lead to proton ordering below first-order phase transition rather than to coherent proton transfers along extended hydrogen-bond chains as is frequently suggested in textbooks of physical chemistry. There is no indication for significant proton tunneling in fast proton conduction phenomena for which almost barrierless proton transfer is suggested to occur. Models of proton conductivity are applied to specific compounds comprising oxides, phosphates, sulfates, and water-containing systems. The importance of proton conductivity is emphasized for biological systems and in devices such as fuel cells, electrochemical sensors, electrochemical reactors, and electrochromic devices.
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