Zhang Ying, Yu Bin, Shi Yujun, Tan Fuquan, Zhang Zhonghua
Key Laboratory for Liquid-Solid Structural Evolution and Processing of Materials (Ministry of Education), School of Materials Science and Engineering, Shandong University, Jingshi Road 17923, Jinan, 250061, P. R. China.
Small. 2024 Jun;20(24):e2310725. doi: 10.1002/smll.202310725. Epub 2023 Dec 28.
Structural regulation is of primary importance in structure-property/application studies of dealloyed nanoporous metals. Three aspects are mainly considered to affect the microstructure of nanoporous metals: design of precursor alloy, choosing of dealloying parameter, and annealing treatment. Herein, through the combination of the above three strategies, the regulation of structure, composition and phase in nanoporous metals are simultaneously achieved. With a dilute CuAgAu as the precursor, three kinds of nanoporous films are fabricated, including bi-phase nanoporous Cu-Ag-Au (B-NP-CuAgAu), hierarchically nanoporous Au (H-NPG) and single-phase homogeneously nanoporous Au (S-NPG). In situ X-ray diffraction and ex situ characterizations are utilized to reveal the structure/composition/phase evolutions during dealloying of CuAgAu, as well as the macroscopic changes of the dealloyed samples. Notably, the ultrafine ligaments/channels of B-NP-CuAgAu and the two-level nanoporous structure of H-NPG endow them with good broadband light absorption and excellent hydrophilicity, which contribute to their outstanding solar steam generation (SSG) performances. Specially, the B-NP-CuAgAu film shows a more efficient SSG performance with water evaporation rate of 1.49 kg m h and photothermal efficiency of 93.6% at 1 kW m, and good seawater desalination ability.
结构调控在脱合金化纳米多孔金属的结构-性能/应用研究中至关重要。主要考虑三个方面来影响纳米多孔金属的微观结构:前驱体合金的设计、脱合金化参数的选择以及退火处理。在此,通过上述三种策略的结合,同时实现了纳米多孔金属中结构、成分和相的调控。以稀CuAgAu作为前驱体,制备了三种纳米多孔薄膜,包括双相纳米多孔Cu-Ag-Au(B-NP-CuAgAu)、分级纳米多孔Au(H-NPG)和单相均匀纳米多孔Au(S-NPG)。利用原位X射线衍射和非原位表征来揭示CuAgAu脱合金化过程中的结构/成分/相演变,以及脱合金化样品的宏观变化。值得注意的是,B-NP-CuAgAu的超细韧带/通道和H-NPG的两级纳米多孔结构赋予它们良好的宽带光吸收和优异的亲水性,这有助于它们出色的太阳能蒸汽产生(SSG)性能。特别是,B-NP-CuAgAu薄膜表现出更高效的SSG性能,在1 kW m时水蒸发速率为1.49 kg m h,光热效率为93.6%,并且具有良好的海水淡化能力。