Division of Nanomaterials and Chemistry, Hefei National Laboratory for Physical Sciences at the Microscale, University of Science and Technology of China, Hefei, Anhui 230026, PR China.
ACS Nano. 2012 Sep 25;6(9):8250-60. doi: 10.1021/nn3029315. Epub 2012 Aug 29.
Artificial nacre based on clay nanosheets have been emerging as a new generation of bioinspired materials due to their super mechanical, fire-retardant, heat-shield, and gas barrier properties. Functional design in artificial nacre is highly demanded to further broaden the applications of these promising bioinspired materials. However, there is rarely a report on the functionalization of artificial nacre at present possibly due to the lack of a feasible strategy to introduce functional components in nacre-like materials without weakening other properties. In this study, we report a feasible method to fabricate artificial nacre-like functional hybrid films by using Au nanoparticle (NP) modified natural clay montmorillonite (MTM) nanosheets as efficient two-dimensional building blocks. First, Au NPs-chitosan-MTM hybrid nanosheets were prepared and homogeneously dispersed in deionized water by the facile in situ growth of Au NPs on chitosan-MTM nanosheets. Then, the obtained Au NPs-chitosan-MTM hybrid nanosheet suspension can be sprayed or vacuum filtrated to form nacre-like layered hybrid nanocoatings or free-standing hybrid films, respectively. Finally, as-fabricated artificial nacre nanocoatings or hybrid films have been demonstrated to behave with surface enhanced Raman scattering (SERS), catalytic, and photothermal conversion properties indicating the successful functionalization of artificial nacre by introducing Au NPs.
基于粘土纳米片的人工珍珠母层材料作为新一代仿生材料而崭露头角,因为它们具有超机械、阻燃、隔热和气体阻隔性能。为了进一步拓宽这些有前途的仿生材料的应用,对人工珍珠母层材料的功能设计提出了更高的要求。然而,由于缺乏在不削弱其他性能的情况下在珍珠母层状材料中引入功能性成分的可行策略,目前很少有关于人工珍珠母层功能化的报道。在本研究中,我们报告了一种通过使用 Au 纳米颗粒 (NP) 修饰的天然粘土蒙脱石 (MTM) 纳米片作为高效二维构建块来制备人工珍珠母层状功能混合薄膜的可行方法。首先,通过在壳聚糖-MTM 纳米片上原位生长 Au NPs 制备 Au NPs-壳聚糖-MTM 杂化纳米片,并将其均匀分散在去离子水中。然后,所得的 Au NPs-壳聚糖-MTM 杂化纳米片悬浮液可以喷涂或真空过滤,分别形成珍珠母层状层状杂化纳米涂层或独立的杂化薄膜。最后,所制备的人工珍珠母纳米涂层或杂化薄膜表现出表面增强拉曼散射 (SERS)、催化和光热转换性能,表明通过引入 Au NPs 成功实现了人工珍珠母层的功能化。