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首页> 外文期刊>Angewandte Chemie >Carboxylic-Acid-Passivated Metal Oxide Nanocrystals: Ligand Exchange Characteristics of a New Binding Motif
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Carboxylic-Acid-Passivated Metal Oxide Nanocrystals: Ligand Exchange Characteristics of a New Binding Motif

机译:羧酸钝化的金属氧化物纳米晶体:新的结合母题的配体交换特性。

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摘要

Ligand exchange is central in the processing of inorganic nanocrystals (NCs) and requires understanding of surface chemistry. Studying sterically stabilized HfO2 and ZrO2 NCs using H-1 solution NMR and IR spectroscopy as well as elemental analysis, this paper demonstrates the reversible exchange of initial oleic acid ligands for octylamine and self-adsorption of oleic acid at NC surfaces. Both processes are incompatible with an X-type binding motif of carboxylic acids as reported for sulfide and selenide NCs. We argue that this behavior stems from the dissociative adsorption of carboxylic acids at the oxide surface. Both proton and carboxylate moieties must be regarded as X-type ligands yielding a combined X-2 binding motif that allows for self-adsorption and exchange for L-type ligands.
机译:配体交换在无机纳米晶体(NCs)的加工中至关重要,并且需要了解表面化学。使用H-1溶液NMR和IR光谱以及元素分析研究空间稳定的HfO2和ZrO2 NCs,本文证明了辛酸胺中初始油酸配体的可逆交换和油酸在NC表面的自吸附。两种方法均与硫化物和硒化物NCs报道的羧酸的X型结合基序不兼容。我们认为,这种行为源于羧酸在氧化物表面的解离吸附。质子和羧酸酯部分都必须被视为产生结合的X-2结合基序的X型配体,该基序允许L型配体的自我吸附和交换。

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