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首页> 外文期刊>Physical chemistry chemical physics: PCCP >Optical properties of free-standing gelatin-Si nanoparticle composite films and gelatin-Si-Au nanoparticle composite films
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Optical properties of free-standing gelatin-Si nanoparticle composite films and gelatin-Si-Au nanoparticle composite films

机译:独立式明胶-硅纳米颗粒复合膜和明胶-硅-金纳米​​颗粒复合膜的光学性质

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摘要

A free-standing fluorescent gelatin-Si nanoparticle composite thin film is facilely prepared by means of a filtration technique assisted by porous copper hydroxide nanostrands as a sacrificial layer. The as-prepared gelatin-Si nanoparticle composite film is greatly portable, flexible, transparent and freestanding. The most important advantage is its robust storage stability stored in ambient air, which make it promising for various applications. Meanwhile, a gelatin-Si-Au nanoparticle composite film is also successfully prepared by the formation of Au NPs in a gelatin-Si nanoparticle composite film through the in situ reduction of HAuCI4 at room temperature. The photoluminescence (PL) quenching and blue shift in the peak of the emission spectra occur due to the energy transfer from Si NPs to Au NPs. By varying the amount and size of Au NPs incorporated into the gelatin-Si nanoparticle composite film, the energy transfer efficiency can be controlled. This is a general method to prepare metal-semiconductor hybrid fluorescent nanomaterials, which offers the possibility of tuning the luminescence intensity and wavelength of the emitted light.
机译:通过以多孔氢氧化铜纳米链作为牺牲层辅助的过滤技术,容易地制备自立式荧光明胶-Si纳米颗粒复合薄膜。所制备的明胶-Si纳米颗粒复合膜具有极大的便携性,柔性,透明性和独立性。最重要的优点是其在环境空气中的稳健的存储稳定性,这使其在各种应用中都有希望。同时,通过在室温下原位还原HAuCl 4在明胶-Si纳米颗粒复合膜中形成Au NPs也成功制备了明胶-Si-Au纳米颗粒复合膜。由于从Si NPs到Au NPs的能量转移,发生了发射光谱峰中的光致发光(PL)猝灭和蓝移。通过改变掺入明胶-Si纳米颗粒复合膜中的Au NP的量和大小,可以控制能量转移效率。这是制备金属-半导体混合荧光纳米材料的一般方法,其提供了调节发射光的发光强度和波长的可能性。

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