Surface-Assisted Alkane Polymerization: Investigation on Structure-Reactivity Relationship.

Surface-assisted polymerization of alkanes is a remarkable reaction for which the surface reconstruction of Au(110) is crucial. The surface of (1x2)-Au(110) precovered with molecules can be completely transformed into (1x 3)-Au(110) by introducing branched methylidene groups on both sides of the ali...

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Detalles Bibliográficos
Publicado en:Journal of the American Chemical Society Vol. 140; no. 14; pp. 4820 - 4826
Autores principales: Sun, Kewei, Chen, Aixi, Liu, Meizhuang, Zhang, Haiming, Duan, Ruomeng, Ji, Penghui, Li, Ling, Li, Qing, Li, Chen, Zhong, Dingyong, Müllen, Klaus, Chi, Lifeng
Formato: Artículo
Publicado: American Chemical Society 4/11/2018
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Acceso en línea:Ver este registro en EBSCOhost
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Sumario:Surface-assisted polymerization of alkanes is a remarkable reaction for which the surface reconstruction of Au(110) is crucial. The surface of (1x2)-Au(110) precovered with molecules can be completely transformed into (1x 3)-Au(110) by introducing branched methylidene groups on both sides of the aliphatic chain (18, 19-dimethylidenehexatriacontane) or locally shifted into (1x3)-Au(110) under exposure to low-energy electrons (beam energy from 3.5 to 33.6 eV, for alkane dotriacontane). Scanning tunneling microscopy investigations demonstrate that alkane chains adsorbed on (1x3)-Au(110) are more reactive than on (1x2)-Au(110), presenting a solid experimental proof for structure -reactivity relationships. This di fference can be ascribed to the existence of an extra row of gold atoms in the groove of (1x3)-Au(110), providing active sites of Au atoms with lower coordination number. The experimental results are further confirmed by density functional theory simulations.