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易于合成的魔数 Au13 团簇的光学性质。

Facile synthesis and optical properties of magic-number Au13 clusters.

机构信息

Faculty of Environmental Earth Science and Graduate School of Environmental Science, Hokkaido University, North 10 West 5, Sapporo 060-0810, Japan.

出版信息

Nanoscale. 2012 Jul 21;4(14):4125-9. doi: 10.1039/c2nr30675a. Epub 2012 May 30.

Abstract

Synthesis of molecular gold clusters through a post-synthetic scheme involving HCl-promoted nuclearity convergence was examined with various phosphine ligands. Systematic studies with a series of bis(diphenylphosphino) ligands (Ph(2)P-(CH(2))(m)-PPh(2)) using electrospray ionization mass spectrometry (ESI-MS) and electronic absorption spectroscopy demonstrated that the use of dppp (m = 3), dppb (m = 4) and dpppe (m = 5) as the ligands resulted in the formation of Au(13)P(8)Cl(4) type clusters, whereas the Au(13)P(10)Cl(2) type cluster was formed with dppe (m = 2). The cluster species did not survive the HCl treatment step when monophosphines PPh(3), PMe(2)Ph, and POct(3) were employed, but Au(13)(POct(3))(8)Cl(4) was isolated as a minor product in the NaBH(4) reduction of Au(POct(3))Cl in aqueous THF. Electronic absorption and photoluminescence studies of a series of Au(13) clusters revealed that their optical properties are highly dependent on the phosphine/chloride composition ratio, but are far less so on the phosphine structure.

摘要

通过涉及 HCl 促进核收敛的后合成方案合成分子金簇,并使用各种膦配体进行了研究。使用电喷雾电离质谱 (ESI-MS) 和电子吸收光谱对一系列双(二苯基膦)配体 (Ph(2)P-(CH(2))(m)-PPh(2)) 的系统研究表明,使用 dppp(m = 3)、dppb(m = 4)和 dpppe(m = 5)作为配体可以形成 Au(13)P(8)Cl(4) 型簇,而使用 dppe(m = 2)则形成 Au(13)P(10)Cl(2) 型簇。当使用单膦配体 PPh(3)、PMe(2)Ph 和 POct(3)时,簇物种在 HCl 处理步骤中无法存活,但在水合 THF 中用 NaBH(4)还原 Au(POct(3))Cl 时,作为次要产物分离出 Au(13)(POct(3))(8)Cl(4)。一系列 Au(13) 簇的电子吸收和光致发光研究表明,它们的光学性质高度依赖于膦/氯组成比,但对膦结构的依赖性要小得多。

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