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In Situ Raman Investigation of TiO2 Nanotube Array-Based Ultraviolet Photodetectors: Effects of Nanotube Length

机译:TiO2纳米管阵列紫外光电探测器的原位拉曼研究:纳米管长度的影响。

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摘要

TiO nanotube arrays (TNAs) with tube lengths of 4, 6, and 7 μm were prepared via two-step anodization. Thereafter, ultraviolet (UV) photodetectors (PDs) with Au/TiO /Au structures were prepared using these TNAs with different tube lengths. The effects of TNA length and device area on the performance of the device were investigated using in situ Raman spectroscopy. The maximum laser/dark current ratio was achieved by using a TNA with a size of 1 × 1 cm and a length of 7 μm, under a 532 nm laser. In addition, when the device was irradiated with a higher energy laser (325 nm), the UV Raman spectrum was found to be more sensitive than the visible Raman spectrum. At 325 nm, the laser/dark current ratio was nearly 24 times higher than that under a 532 nm laser. Six phonon modes of anatase TNAs were observed, at 144, 199, 395, 514, and 635 cm , which were assigned to the E , E , B , A /B , and E modes, respectively. The strong low-frequency band at 144 cm was caused by the O-Ti-O bending vibration and is a characteristic band of anatase. The results show that the performance of TNA-based PDs is length-dependent. Surface-enhanced Raman scattering signals of 4-mercaptobenzoic acid (4-MBA) molecules were also observed on the TNA surface. This result indicates that the length-dependent performance may be derived from an increase in the specific surface area of the TNA. In addition, the strong absorption of UV light by the TNAs caused a blueshift of the E mode.
机译:通过两步阳极氧化制备管长分别为4、6和7μm的TiO纳米管阵列(TNA)。此后,使用具有不同管长的这些TNA制备具有Au / TiO / Au结构的紫外线(UV)光电探测器(PD)。使用原位拉曼光谱研究了TNA长度和器件面积对器件性能的影响。在532 nm激光下,通过使用尺寸为1×1 cm,长度为7μm的TNA,可以实现最大的激光/暗电流比。另外,当用较高能量的激光(325 nm)照射设备时,发现紫外拉曼光谱比可见拉曼光谱更敏感。在325 nm激光下,激光/暗电流比几乎是532 nm激光下的24倍。在144、199、395、514和635 cm处观察到六个声子锐钛矿型TNA,分别分配给E,E,B,A / B和E模。 144 cm处的强低频频带是由O-Ti-O弯曲振动引起的,是锐钛矿的特征频带。结果表明,基于TNA的PD的性能取决于长度。在TNA表面还观察到4-巯基苯甲酸(4-MBA)分子的表面增强拉曼散射信号。该结果表明,取决于长度的性能可以源自TNA的比表面积的增加。此外,TNA对紫外线的强烈吸收导致E模式发生蓝移。

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