School of Chemistry and Environment, Beihang University , Beijing 100191, People's Republic of China.
J Am Chem Soc. 2013 Oct 30;135(43):16082-91. doi: 10.1021/ja402751r. Epub 2013 Jun 12.
Designing a general route for rational synthesis of a series or families of nanomaterials for emerging applications has become more and more fascinating and vital in the view of nanoscience and nanotechnology. Herein, we explore a general strategy for fabricating uniform nanocages of metal hydroxides (MHs) and metal oxides (MOs). A template-assisted route inspired by Pearson's hard and soft acid-base (HSAB) principle was employed for synthesizing MH nanocages via meticulous selection of the coordinating etchant as well as optimization of the reaction conditions. The concept of "coordinating etching" is successfully achieved in this work. This unique route shows potential in designing well-defined and high-quality MH nanocages with varying components, shell thicknesses, shapes, and sizes at room temperature. Consequently, porous MO nanocages can be obtained readily just through appropriate thermal treament of the respective MH nanocages. The overall strategy present in this work extends the application of the HSAB principle in nanoscience and offers a unqiue clue for rational fabrication of hollow (porous) and/or amorphous structures on the nanoscale, where these nanocages may present promising potential for various applications.
从纳米科学和纳米技术的角度来看,设计用于新兴应用的一系列或一族纳米材料的合理合成的一般路线变得越来越吸引人且至关重要。在此,我们探索了一种用于制造均匀的金属氢氧化物 (MH) 和金属氧化物 (MO) 纳米笼的通用策略。受 Pearson 的软硬酸碱 (HSAB) 原理启发的模板辅助路线被用于通过仔细选择配位蚀刻剂以及优化反应条件来合成 MH 纳米笼。在这项工作中成功实现了“配位蚀刻”的概念。这种独特的路线具有在室温下设计具有不同成分、壳层厚度、形状和尺寸的定义明确和高质量 MH 纳米笼的潜力。因此,只需通过适当的热处理各自的 MH 纳米笼,就可以很容易地获得多孔 MO 纳米笼。这项工作中的整体策略扩展了 HSAB 原理在纳米科学中的应用,并为在纳米尺度上合理制造空心(多孔)和/或无定形结构提供了独特的线索,这些纳米笼在各种应用中可能具有广阔的应用前景。