Joo Jang Ho, Kim Byung-Ho, Lee Jae-Seung
Department of Materials Science and Engineering, Korea University, 145 Anam-ro, Seoungbuk-gu, Seoul, 02481, Republic of Korea.
Small. 2017 Nov;13(43). doi: 10.1002/smll.201701751. Epub 2017 Sep 13.
A novel room-temperature aqueous synthesis for gold nanoparticle-embedded silver cubic mesh nanostructures using AgCl templates via a template-assisted coreduction method is developed. The cubic AgCl templates are coreduced in the presence of AuCl and Ag , resulting in the reduction of AuCl into gold nanoparticles on the outer region of AgCl templates, followed by the reduction of AgCl and Ag into silver cubic mesh nanostructures. Removal of the template clearly demonstrates the delicately designed silver mesh nanostructures embedded with gold nanoparticles. The synthetic mechanism, structural properties, and surface functionalization are spectroscopically investigated. The plasmonic photocatalysis of the cubic mesh nanostructures for the degradation of organic pollutants and removal of highly toxic metal ions is investigated; the photocatalytic activity of the cubic mesh nanostructures is superior to those of conventional TiO catalysts and they are catalytically functional even in natural water, owing to their high surface area and excellent chemical stability. The synthetic development presented in this study can be exploited for the highly elaborate, yet, facile design of nanomaterials with outstanding properties.
通过模板辅助共还原法,利用氯化银模板开发了一种新型的室温水性合成方法,用于制备嵌入金纳米粒子的银立方网状纳米结构。立方氯化银模板在氯化金和银的存在下进行共还原,导致氯化金在氯化银模板的外部区域还原为金纳米粒子,随后氯化银和银还原为银立方网状纳米结构。去除模板清楚地展示了嵌入金纳米粒子的精心设计的银网状纳米结构。通过光谱研究了合成机理、结构性质和表面功能化。研究了立方网状纳米结构对有机污染物降解和高毒性金属离子去除的等离子体光催化性能;立方网状纳米结构的光催化活性优于传统的二氧化钛催化剂,并且由于其高表面积和优异的化学稳定性,即使在天然水中也具有催化功能。本研究中提出的合成方法可用于设计具有优异性能的高度精细且简便的纳米材料。