首页> 外文期刊>Applied Catalysis, B. Environmental: An International Journal Devoted to Catalytic Science and Its Applications >Silicon nanowire/TiO2 heterojunction arrays for effective photoelectrocatalysis under simulated solar light irradiation
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Silicon nanowire/TiO2 heterojunction arrays for effective photoelectrocatalysis under simulated solar light irradiation

机译:模拟太阳光下有效光电催化的硅纳米线/ TiO2异质结阵列

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The silicon nanowire (SiNW)/TiO2 heterojunction arrays have been prepared by chemical vapor depositing a TiO2 layer on SiNW arrays which are obtained by chemical etching of Si wafers. The types of SiNW/TiO2 heterojunctions can be modulated simply by using p-type or n-type Si wafers. Compared with samples of depositing TiO2 on p-type or n-type Si wafers (p-Si/TiO2 or p-Si/TiO2), both n-SiNW/TiO2 and p-SiNW/TiO2 heterojunctions can improve the ultraviolet photoresponse under a bias potential, and in particular, a remarkable visible photoresponse of n-SiNW/TiO2 heterojunction is observed when the bias potential is higher than 1.7 V (vs. SCE). Cyclic voltammetry (CV) curves illuminate that n-SiNW/TiO2 heterojunctions have steady visible photoresponse in aqueous solution. According to the surface photovoltage (SPV) measurements, it is found that n-SiNW/TiO2 heterojunctions possess window effect, namely, n-SiNW/TiO2 heterojunctions can utilize the superposition photoresponse in the wavelength ranges from 300 to 400 nm (contributed by TiO2) and from 400 to 800 nm (contributed by n-SiNW). The mechanism of this phenomenon is explained based on the energy band model. The photoelectrocatalytic activity of the n-SiNW/TiO2 heterojunction arrays is evaluated using phenol as a test substance under Xe lamp irradiation. The kinetic constant and total organic carbon (TOC) removal are 1.7 times and 2 times as great as those of n-Si/TiO2, respectively.
机译:硅纳米线(SiNW)/ TiO2异质结阵列是通过在SiNW阵列上化学气相沉积TiO2层而制得的,而SiNW阵列是通过对Si晶片进行化学蚀刻而获得的。 SiNW / TiO2异质结的类型可以简单地通过使用p型或n型Si晶圆进行调制。与在p型或n型Si晶片(p-Si / TiO2或p-Si / TiO2)上沉积TiO2的样品相比,n-SiNW / TiO2和p-SiNW / TiO2异质结都可以改善紫外光响应。当偏置电位高于1.7 V(vs. SCE)时,可以观察到n-SiNW / TiO2异质结的明显可见光响应。循环伏安法(CV)曲线说明n-SiNW / TiO2异质结在水溶液中具有稳定的可见光响应。根据表面光电压(SPV)的测量,发现n-SiNW / TiO2异质结具有窗口效应,即n-SiNW / TiO2异质结可以利用300至400 nm波长范围内的叠加光响应(由TiO2贡献) )和400至800 nm(由n-SiNW贡献)。基于能带模型解释了这种现象的机理。使用苯酚作为受试物质,在氙气灯照射下,评估n-SiNW / TiO2异质结阵列的光电催化活性。动力学常数和总有机碳去除量分别是n-Si / TiO2的1.7倍和2倍。

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