Li Jingguo, Zhao Tingting, Chen Tiankai, Liu Yanbiao, Ong Choon Nam, Xie Jianping
Department of Chemical and Biomolecular Engineering, National University of Singapore, 117585 Singapore, Singapore.
Nanoscale. 2015 May 7;7(17):7502-19. doi: 10.1039/c5nr00857c.
Besides being valuable assets in our daily lives, noble metals (namely, gold, silver, and platinum) also feature many intriguing physical and chemical properties when their sizes are reduced to the nano- or even subnano-scale; such assets may significantly increase the values of the noble metals as functional materials for tackling important societal issues related to human health and the environment. Among which, designing/engineering of noble metal nanomaterials (NMNs) to address challenging issues in the environment has attracted recent interest in the community. In general, the use of NMNs for environmental applications is highly dependent on the physical and chemical properties of NMNs. Such properties can be readily controlled by tailoring the attributes of NMNs, including their size, shape, composition, and surface. In this feature article, we discuss recent progress in the rational design and engineering of NMNs with particular focus on their applications in the field of environmental sensing and catalysis. The development of functional NMNs for environmental applications is highly interdisciplinary, which requires concerted efforts from the communities of materials science, chemistry, engineering, and environmental science.
贵金属(即金、银和铂)除了在我们的日常生活中是宝贵的资产外,当它们的尺寸减小到纳米甚至亚纳米尺度时,还具有许多引人入胜的物理和化学性质;这些特性可能会显著提高贵金属作为解决与人类健康和环境相关的重要社会问题的功能材料的价值。其中,设计/制造贵金属纳米材料(NMNs)以解决环境中的挑战性问题最近引起了该领域的关注。一般来说,NMNs在环境应用中的使用高度依赖于NMNs的物理和化学性质。通过调整NMNs的属性,包括其尺寸、形状、组成和表面,可以很容易地控制这些性质。在这篇专题文章中,我们讨论了NMNs合理设计和制造的最新进展,特别关注它们在环境传感和催化领域的应用。用于环境应用的功能性NMNs的开发是高度跨学科的,这需要材料科学、化学、工程和环境科学领域的共同努力。