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The effect of hydrogen nanobubbles on the morphology of gold-gelatin bionanocomposite films and their optical properties

机译:氢纳米气泡对金-明胶仿生复合膜的形貌及其光学性质的影响

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摘要

Goldgelatin bionanocomposite films are prepared by the reduction of gold ions by sodium borohydride in an aqueous solution. It is shown that both the solution and the films on glass substrates contain entrapped hydrogen micro- and nanobubbles with diameters in the range of 200 nm3m. The optical properties of gold nanoparticles in the presence of gelatin and hydrogen nanobubbles are measured and simulated by using the discrete dipole approximation method. The composite films having micro- and nanobubble inclusions have been found to be very stable. The calculated localized surface plasmon resonance band is found in agreement with the experimental band position only when the presence of hydrogen bubbles around the gold nanoparticles is taken into account. The different morphological features engendered by the presence of the bubbles in the film (gelatin receptacles for the nanoparticles, gelatin hemispheres raised by the bubbles under the surface, cavities on the surface of the film, etc) are described in detail and considered for potential applications. This work is highly relevant to the new and exciting topic of nanobubbles on surfaces and interfaces.
机译:通过在水溶液中用硼氢化钠还原金离子来制备金明胶生物纳米复合膜。结果表明,溶液和玻璃基板上的薄膜均含有截留的氢微气泡和纳米气泡,直径在200 nm3m的范围内。使用离散偶极近似法测量并模拟了存在明胶和氢纳米气泡的金纳米颗粒的光学性质。已经发现具有微气泡和纳米气泡夹杂物的复合膜非常稳定。仅当考虑到金纳米颗粒周围氢气泡的存在时,才发现计算出的局部表面等离子体激元共振带与实验带位置一致。薄膜中存在气泡(纳米颗粒的明胶容器,表面下的气泡引起的明胶半球,薄膜表面上的空腔等)引起的不同形态特征已详细描述,并考虑了其潜在用途。这项工作与表面和界面上纳米气泡这一令人振奋的新话题高度相关。

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