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首页> 外文期刊>Catalysis science & technology >Bio-inspired SiO2-hard-template reconstructed g-C(3)N(4)nanosheets for enhanced photocatalytic hydrogen evolution
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Bio-inspired SiO2-hard-template reconstructed g-C(3)N(4)nanosheets for enhanced photocatalytic hydrogen evolution

机译:仿生SiO2-hard-template重建g c N (3) (4) nanosheets增强光催化氢进化

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摘要

Building architectures to manipulate light propagation using a light-conversion matrix is one of the most competitive strategies to enhance photocatalytic performance. In this work, a bio-inspired SiO(2)hard template with interconnected SiO(2)with a one-dimensional structure was devised to enhance the visible light harvesting ability of g-C3N4, and the SiO2/g-C(3)N(4)nanocomposite is cleverly synthesizedviaanin situthermal polymerization method. Based on UV-vis diffuse reflectance spectrometry (UV-vis DRS) and finite difference time domain simulation (FDTD) measurements, it is found that the SiO2/g-C(3)N(4)nanocomposite displays obviously enhanced visible light absorption and light-scattering when compared to pristine g-C3N4, suggesting it has highly enhanced light harvesting ability. As expected, SiO2/g-C(3)N(4)displays a remarkable enhancement in photocatalytic H(2)production when compared to bare g-C3N4. Such enhancement is attributed to the synergistic effect of g-C(3)N(4)and SiO(2)hard template microstructures. The SiO(2)one-dimensional structure not only enhances light scattering to widen the visible-light absorption range and improve the utilization efficiency of solar energy, but it also increases the specific surface area of g-C(3)N(4)by reducing its aperture size. This research has far-reaching implications for increasing the use of sunlight and improving the development of hydrogen energy.
机译:构建架构来操纵光传播使用光能转换矩阵的一个最具竞争力的策略来提高光催化性能。仿生SiO(2)硬模板与一维互连SiO (2)结构设计提高明显光吸收能力g-C3N4,二氧化硅/ g c N(3)(4)纳米复合材料是聪明的synthesizedviaanin situthermal聚合方法。光谱(紫外可见DRS)和有限差分时域仿真(FDTD)测量,它是发现二氧化硅/ g c N(3)(4)纳米复合材料显示明显增强的可见光吸收、光散射相比原始g-C3N4,表明它有高度增强光吸收能力。二氧化硅/ g c N(3)(4)显示了显著的增强在光催化相比,H(2)生产g-C3N4。g c的协同效应(3)N (4)SiO微观结构(2)硬模板。不仅增强了SiO(2)一维结构扩大可见光的光散射吸收范围,提高利用率太阳能的效率,但也增加的比表面积g c N (3) (4)减少其孔径大小。增加使用的深远的影响的阳光和提高的发展氢能源。

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