Department of Chemical and Biomolecular Engineering, National University of Singapore, 10 Kent Ridge Crescent, Singapore 119260, Republic of Singapore.
J Am Chem Soc. 2010 Dec 29;132(51):18258-65. doi: 10.1021/ja107405x. Epub 2010 Dec 8.
The shape-controlled synthesis of noble metal nanocrystals (NCs) bounded by high-index facets is a current research interest because the products have the potential of significantly improving the catalytic performance of NCs in industrially important reactions. This study reports a versatile method for synthesizing polyhedral NCs enclosed by a variety of high-index Pd facets. The method is based on the heteroepitaxial growth of Pd layers on concave trisoctahedral (TOH) gold NC seeds under careful control of the growth kinetics. Polyhedral Au@Pd NCs with three different classes of high-index facets, including concave TOH NCs with {hhl} facets, concave hexoctahedral (HOH) NCs with {hkl} facets, and tetrahexahedral (THH) NCs with {hk0} facets, can be formed in high yield. The Miller indices of NCs are also modifiable, and we have used the THH NCs as a demonstrative example. The catalytic activities of these NCs were evaluated by the structure-sensitive reaction of formic acid electro-oxidation. The results showed that the high-index facets are generally more active than the low-index facets. In summary, a seeded growth process based on concave high-index faceted monometallic TOH NC templates and careful control of the growth kinetics is a simple and effective strategy for the synthesis of noble metal NCs with high-index facets. It also offers tailorability of the surface structure in shape-controlled synthesis.
具有高指数晶面的贵金属纳米晶体 (NCs) 的形状控制合成是当前的研究热点,因为这些产物有可能显著提高 NCs 在工业上重要反应中的催化性能。本研究报告了一种通用的方法,用于合成由各种高指数 Pd 晶面包围的多面体 NCs。该方法基于在仔细控制生长动力学的情况下,在凹三角二十面体 (TOH) 金 NC 种子上异质外延生长 Pd 层。可以高产率形成具有三类不同高指数晶面的多面体 Au@Pd NCs,包括具有 {hhl} 晶面的凹 TOH NCs、具有 {hkl} 晶面的凹六八面体 (HOH) NCs 和具有 {hk0} 晶面的四面体八面体 (THH) NCs。NCs 的米勒指数也是可修改的,我们已经使用 THH NCs 作为示范示例。通过甲酸电氧化的结构敏感反应评估了这些 NCs 的催化活性。结果表明,高指数晶面通常比低指数晶面更活跃。总之,基于凹面高指数晶面单金属 TOH NC 模板的种子生长过程和对生长动力学的仔细控制,是合成具有高指数晶面的贵金属 NCs 的一种简单有效的策略。它还为在形状控制合成中提供了表面结构的可定制性。