Leventis Nicholas
Department of Chemistry, University of Missouri, Rolla, Missouri 65409, USA.
Acc Chem Res. 2007 Sep;40(9):874-84. doi: 10.1021/ar600033s. Epub 2007 May 9.
Nanocasting conformal polymer coatings on preformed three-dimensional assemblies of nanoparticles, macroscopically classified as aerogels, reinforces the interparticle necks and increases the strength of the bulk material dramatically. For example, specific compressive strengths are reported to be higher than those for mild steel and aluminum, while the ability to store energy may surpass that of armor grade ceramics. Specific chemistries have been developed for cross-linking skeletal nanoparticles with polyureas and polyurethanes, epoxies, and polystyrene, while the technology has been demonstrated with ~30 different nanoparticle networks in addition to silica.
在宏观上归类为气凝胶的纳米粒子预制三维组件上进行纳米铸造保形聚合物涂层,可增强粒子间的颈部连接,并显著提高块状材料的强度。例如,据报道其比压缩强度高于低碳钢和铝,而储能能力可能超过装甲级陶瓷。已经开发出特定的化学方法,用于使骨架纳米粒子与聚脲、聚氨酯、环氧树脂和聚苯乙烯交联,除了二氧化硅之外,该技术还在约30种不同的纳米粒子网络上得到了验证。