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首页> 外文期刊>Vacuum: Technology Applications & Ion Physics: The International Journal & Abstracting Service for Vacuum Science & Technology >Synthesis, surface properties, crystal structure and dye sensitized solar cell performance of TiO2 nanotube arrays anodized under different voltages
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Synthesis, surface properties, crystal structure and dye sensitized solar cell performance of TiO2 nanotube arrays anodized under different voltages

机译:合成,表面性能,晶体结构和染料敏化TiO的太阳能电池性能 2 纳米管阵列在不同电压下阳极氧化

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摘要

Abstract In this study, anodic TiO2 nanotube (TNT) arrays with average nanotube diameter from 26?nm to 115?nm and length from 1.3?μm to 6.4?μm were grown by electrochemical method. Anodization process were performed under different voltages from 10 to 50?V in ethylene glycol – ammonium fluoride – water electrolyte. Formation mechanism of TNTs was summarized. Surface morphology, crystal structure, roughness, wettability and elasticity of TNT arrays were characterized by using field emission scanning electron microscope (FESEM), X-Ray diffraction (XRD), atomic force microscope (AFM), optical tensiometer and universal mechanical tester, respectively. Water contact angle measurements and nanoindentation tests proved that water contact angle and elastic modulus of TNT arrays decrease with increasing anodization voltage. Photocurrent-photovoltage curves and electrochemical impedance spectroscopy (EIS) measurements of dye sensitized solar cells (DSSC) were made to investigate the effects of anodization voltages on photoanode performance. The light conversion efficiency and photocurrent density of TNT photoanodes was increased with increasing anodization voltage due to larger nanotube length and surface area. The results show that anodization voltage is significant parameter for the surface properties and dye sensitized solar cell (DSSC) performance TNT arrays. Highlights ? TiO2 nanotube arrays were grown under anodization voltages from 10 to 50?V. ? Effect of anodization voltage on crystal structure, morphology, roughness, wettability and elastic modulus were investigated. ? Enhanced DSSC performance was observed with increasing anodization voltage. ? RCT1 resistance at WE/Electrolyte interface in DSSC was decreased with increasing anodization voltage. ]]>
机译:<![CDATA [ 抽象 在本研究中,Anodic Tio 2 通过电化学方法生长纳米管(TNT)阵列,平均纳米管直径为26Ω·Nm至115Ω,长度为1.3Ω·μm至6.4ΩΩ·μm。在乙二醇 - 氟化铵 - 水电解质中在10至50〜50 v的不同电压下进行阳极氧化过程。总结了TNT的形成机制。通过使用现场发射扫描电子显微镜(FESEM),X射线衍射(XRD),原子力显微镜(AFM),光学张力计和通用机械测试仪,表征TNT阵列的表面形态,晶体结构,粗糙度,润湿性和弹性。水接触角测量和纳米压腔试验证明了TNT阵列的水接触角和弹性模量随着阳极氧化电压的增加而降低。采用光电流 - 光伏曲线和电化学阻抗光谱(EIS)测量染料敏化太阳能电池(DSSC),研究了阳极氧化电压对光电潮汐性能的影响。由于纳米管长度和表面积较大,随着阳极氧化电压的增加而增加了TNT光化的光转换效率和光电流密度。结果表明,阳极氧化电压是表面性质和染料敏化太阳能电池(DSSC)性能TNT阵列的显着参数。 亮点 ?< / ce:标签> tio 2 纳米管阵列在10到50的阳极氧化电压下生长? v。 阳极氧化电压对晶体结构的影响,研究了形态,粗糙度,润湿性和弹性模量。 <列表 - 项目ID =“U0020”> 随着阳极化电压的增加,观察到增强的DSSC性能。 R CT1 在DSSC中的WE /电解液接口的电阻随着阳极氧化电压的增加而降低。 ]]>

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