Mohanan Jaya L, Arachchige Indika U, Brock Stephanie L
Department of Chemistry, Wayne State University, Detroit, MI 48202, USA.
Science. 2005 Jan 21;307(5708):397-400. doi: 10.1126/science.1106525.
Chalcogenide aerogels based entirely on semiconducting II-VI or IV-VI frameworks have been prepared from a general strategy that involves oxidative aggregation of metal chalcogenide nanoparticle building blocks followed by supercritical solvent removal. The resultant materials are mesoporous, exhibit high surface areas, can be prepared as monoliths, and demonstrate the characteristic quantum-confined optical properties of their nanoparticle components. These materials can be synthesized from a variety of building blocks by chemical or photochemical oxidation, and the properties can be further tuned by heat treatment. Aerogel formation represents a powerful yet facile method for metal chalcogenide nanoparticle assembly and the creation of mesoporous semiconductors.
完全基于半导体II - VI或IV - VI框架的硫族化物气凝胶是通过一种通用策略制备的,该策略包括金属硫族化物纳米颗粒构建块的氧化聚集,随后进行超临界溶剂去除。所得材料是介孔的,具有高表面积,可以制备成整块材料,并表现出其纳米颗粒组分的特征性量子限制光学性质。这些材料可以通过化学或光化学氧化从多种构建块合成,并且其性质可以通过热处理进一步调节。气凝胶的形成是一种用于金属硫族化物纳米颗粒组装和制备介孔半导体的强大而简便的方法。