Räisänen Minna T, Kemell Marianna, Leskelä Markku, Repo Timo
Laboratory of Inorganic Chemistry, Department of Chemistry, University of Helsinki, Helsinki, Finland.
Inorg Chem. 2007 Apr 16;46(8):3251-6. doi: 10.1021/ic0624468. Epub 2007 Mar 17.
Gold is designated as the noblest metal because of its chemical inertness. It is known to dissolve in cyanide solutions in the presence of air or H2O2 or in halogen-containing solutions, aqua regia being the most famous example. Herein, we report a unique thiol, especially 4-pyridinethiol (4-PS), assisted dissolution of Au in alcohol solutions. Although dissolution was found to be very selective for pyridinethiols, such a phenomenon is astonishing since thiols are commonly used as etch resists for Au and even 4-PS is extensively used as a surface modifier for Au. To gain further understanding of the dissolution process, the influence of the reaction conditions was extensively studied. On the basis of the obtained results, a mechanism for the dissolution reaction is proposed. Fascinatingly, by tuning of the reaction conditions, this phenomenon can be applied in selective preparation of self-supporting nanometer-thick Au foils.
金因其化学惰性而被视为最贵重的金属。已知金在有空气或过氧化氢存在的情况下能溶解于氰化物溶液中,或者在含卤素的溶液中溶解,王水就是最著名的例子。在此,我们报道了一种独特的硫醇,特别是4-吡啶硫醇(4-PS),能在醇溶液中辅助金的溶解。尽管发现这种溶解对吡啶硫醇具有高度选择性,但这种现象令人惊讶,因为硫醇通常用作金的蚀刻抗蚀剂,甚至4-PS还被广泛用作金的表面改性剂。为了进一步了解溶解过程,我们广泛研究了反应条件的影响。基于所获得的结果,提出了溶解反应的机理。有趣的是,通过调整反应条件,这种现象可应用于自支撑纳米厚金箔的选择性制备。