The simple yet elusive crystal structure of silver acetate and the role of the Ag-Ag bond in the formation of silver nanoparticles during the thermally induced reduction of silver carboxylates

被引:82
作者
Olson, LP
Whitcomb, DR
Rajeswaran, M
Blanton, TN
Stwertka, BJ
机构
[1] Eastman Kodak Co, Rochester, NY 14650 USA
[2] Eastman Kodak Co, Oakdale, MN 55129 USA
关键词
D O I
10.1021/cm052657v
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
We report the single-crystal X-ray structure of silver acetate, accompanied by Raman spectra and density functional theory calculations. This work should aid understanding of the process of forming silver nanoparticles during the thermally induced reduction of silver carboxylates, e.g., in thermographic materials. The structure of silver acetate comprises the often-observed Ag-2(carboxylate)2 dimer unit connected by interdimer Ag-O bonds to form infinite chains that align in a parallel fashion, forming stacks. The presence in the dimer of a Ag-Ag bond via closed-shell d(10)-d(10) interactions is determined by Atoms in Molecules methodology, tentatively supported by the experimental observation of Raman scattering peaks (also found by vibrational frequency calculations) for Ag-Ag stretching. The Ag(I)-Ag(I) bond may be an important precursor to metallic silver formation, as single-electron reduction of the Ag-2(carboxylate)(2) species could result in the formation of (Ag-2)(+center dot), known in photographic chemistry as a precursor to metallic silver clusters. The calculated structure of the radical anion of silver acetate consists of a (Ag-2)(+center dot) cluster complexed by two acetate ions, lending support to earlier postulates that Ag-Ag bonding may promote the formation of silver nanoparticles during the thermally induced reduction of silver carboxylates.
引用
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页码:1667 / 1674
页数:8
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