首页> 外文期刊>Applied Catalysis, B. Environmental: An International Journal Devoted to Catalytic Science and Its Applications >Passivated n-p co-doping of niobium and nitrogen into self-organized TiO2 nanotube arrays for enhanced visible light photocatalytic performance
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Passivated n-p co-doping of niobium and nitrogen into self-organized TiO2 nanotube arrays for enhanced visible light photocatalytic performance

机译:铌和氮的钝化n-p共掺杂到自组织的TiO2纳米管阵列中以增强可见光的光催化性能

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摘要

Passivated n-p co-doping of niobium and nitrogen was successfully incorporated into self-organized TiO2 nanotube arrays by anodizing Ti-Nb alloys, followed with the heat treatment in a flow of ammonia gas. Nb was doped into TiO2 nanotube arrays during the anodization by substituting Ti~(4+) with Nb~(4+), while N was doped into TiO2 nanotube arrays during the heat treatment by substituting O~(2-) with N~(3-). Since Nb in TiO2 enhanced the adsorption of NH3 molecules onto the nanotube arrays, Nb doping was found to promote the subsequent N doping into the anatase lattice. As predicted by first-principles band structure calculations, Nb/N co-doped titanium oxide nanotube arrays demonstrated a largely enhanced visible light response and visible light photocatalytic performance on the degradation of methylene blue, compared to TiO2 nanotube arrays or TiO2 nanotube arrays with either dopant. The passivated n-p co-doping approach may also be applied to other material systems and promise a wide range of technical applications.
机译:通过对Ti-Nb合金进行阳极氧化,然后在氨气流中进行热处理,将铌和氮的钝化n-p共掺杂铌成功地掺入了自组织的TiO2纳米管阵列中。在阳极氧化过程中,将Nb〜(4+)替换为Ti〜(4+),将Nb掺杂到TiO2纳米管阵列中;而在热处理过程中,将N〜(2-)替换为O〜(2-),将Nb掺杂到TiO2纳米管阵列中。 3-)。由于TiO2中的Nb增强了NH3分子在纳米管阵列上的吸附,因此发现Nb掺杂可促进随后的N掺杂进入锐钛矿晶格。正如第一性原理的能带结构计算所预测的,与TiO2纳米管阵列或TiO2纳米管阵列相比,Nb / N共掺杂的二氧化钛纳米管阵列在亚甲基蓝的降解方面显示出大大增强的可见光响应和可见光光催化性能。掺杂剂。钝化的n-p共掺杂方法也可以应用于其他材料系统,并有望实现广泛的技术应用。

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