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N- and C-Modified TiO2 Nanotube Arrays: Enhanced Photoelectrochemical Properties and Effect of Nanotubes Length on Photoconversion Efficiency

机译:N-和C改性TiO2纳米管阵列:增强光电化学性质和纳米管长度对光电转换效率的影响

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摘要

In this investigation, a new, facile, low cost and environmental-friendly method was introduced to fabricate N- and C-modified TiO2 nanotube arrays by immersing the as-anodized TiO2 nanotube arrays (TNTAs) in a urea aqueous solution with mechanical agitation for a short time and keeping the TNTAs immersed in the solution for 6 h at room temperature. Then, the TNTAs were annealed at different temperatures. The produced N-, C-modified TNTAs were characterized using FESEM, EDX, XRD, XPS, UV-Vis diffuse reflectance spectra. Modified optical properties with narrow band gap energy, Eg, of 2.65 eV was obtained after annealing the modified TNTAs at 550 °C. Modified TNTAs showed enhanced photoelectochemical performance. Photoconversion efficiency (PCE) was increased from 4.35% for pristine (unmodified) TNTAs to 5.18% for modified TNTAs, an increase of 19%. Effect of nanotubes length of modified TNTAs on photoelectrochemical performance was also studied. Photocurrent density and PCE were increased by increasing nanotube length with a maximum PCE of 6.38% for nanotube length of 55 µm. This high PCE value was attributed to: band gap reduction due to C- and N-modification of TNTAs surface, increased surface area of long TNTAs compared with short TNTAs, investigated in previous studies.
机译:在该研究中,通过用机械搅拌浸入尿素水溶液中的尿素水溶液中,引入新的,容易,低成本和环保阵列以制造N-和C改性的TiO2纳米管阵列。短时间并将TNTA保持在室温下浸入溶液中6小时。然后,TNTA在不同的温度下退火。使用FeSEM,EDX,XRD,XPS,UV-Vis漫反射光谱表征产生的N-,C改性TNTA。改性光学性能具有窄带隙能量,例如在550℃下退火改性的TNTA后获得2.65eV。修改的TNTAS显示出增强的光电化素性能。光电转化效率(PCE)从原始(未修饰)TNTA的4.35%增加到修饰TNTA的5.18%,同比增加19%。还研究了纳米管长度改性TNTAs对光电化学性能的影响。通过增加纳米管长度的纳米管长度增加光电流密度和PCE,以纳米管长度为55μm的最大PCE为6.38%。这种高pCE值归因于:TNTAS表面的C-和N-改性引起的带隙减少,与短TNTAS的长TNTA的表面积增加,在先前的研究中研究。

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