BaTiO3/Cu2O异质结带偏移与增强的光电反应:理论与实验(会议报告)

Dipika Sharma, V. Satsangi, Sahab Dass Kaura, R. Shrivastav, U. Waghmare
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引用次数: 0

摘要

BaTiO3/Cu2O异质结带偏移与增强的光电化学响应Dipika Sharmaa, Vibha R. Satsangib, Rohit Shrivastava, Umesh V. Waghmarec, Sahab Dassa a Dayalbagh教育学院化学系,Agra-282 110(印度)b Dayalbagh教育学院物理与计算机科学系,Agra-282 110(印度)c贾瓦哈拉尔·尼赫鲁高级科学研究中心理论科学单元,班加罗尔Jakkur - 56064(印度)*电话:+91-9219695960传真:+ 91-562-2801226。电子邮件:drsahabdas@gmail.com。利用基于DFT的能带偏移和载流子有效质量计算及其实验验证,对原始BaTiO3、Cu2O和BaTiO3/Cu2O异质结的光电活性进行了研究。DFT计算结果表明,异质结形成后,BaTiO3和Cu2O具有交错型带向,Cu2O中的电子比BaTiO3中的电子迁移率高。交错型带边排列和电子和空穴的高迁移率改善了BaTiO3/Cu2O异质结中光生载流子的分离。为了验证理论结果,在不同Cu2O厚度的原始BaTiO3、Cu2O和BaTiO3/Cu2O异质结上进行了实验。用X射线衍射仪、扫描电镜和紫外可见光谱对样品进行了表征。采用原始的BaTiO3、Cu2O和BaTiO3/Cu2O异质结纳米薄膜作为光电极,在光电化学电池中进行水分解反应。442 nm厚的BaTiO3/Cu2O异质结光电极在0.90 V/SCE下的最大光电流密度为1.44 mA/cm2,该异质结所表现出的光电流密度和光转换效率的提高可能归因于BaTiO3/Cu2O界面上光电载流子的电导率提高和分离增强。实验结果与第一性原理计算结果比较良好,表明该计算方法有潜力用于实验前筛选各种金属氧化物异质结,从而节省宝贵的化学物质、时间和能量。关键词:光电化学,水分解,异质结,Cu2O, BaTiO3参考文献:[1]纳米结构双层薄膜在光电化学水分解中的应用——综述:International Journal of Hydrogen Energy,(2012)。[2]刘建军,刘建军,刘建军,等。纳米SrTiO3薄膜的光电化学制氢研究。国际氢能学报;42(2):430 - 441,2014。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Band-offsets at BaTiO3/Cu2O heterojunction and enhanced photoelectrochemical response: theory and experiment(Conference Presentation)
Band-offsets at BaTiO3/Cu2O heterojunction and enhanced photoelectrochemical response: theory and experiment Dipika Sharmaa, Vibha R. Satsangib, Rohit Shrivastava, Umesh V. Waghmarec, Sahab Dassa aDepartment of Chemistry, Dayalbagh Educational Institute, Agra-282 110 (India) bDepartment of Physics and Computer Sciences, Dayalbagh Educational Institute, Agra-282 110 (India) cTheoretical Sciences Unit, Jawaharlal Nehru Centre for Advanced Scientific Research, Jakkur, Bangalore-560 064 (India) * Phone: +91-9219695960. Fax: +91-562-2801226. E-mail: drsahabdas@gmail.com. Study on photoelectrochemical activity of pristine BaTiO3, Cu2O and BaTiO3/Cu2O heterojunction has been carried out using DFT based band offsets and charge carriers effective mass calculations and their experimental verification. The results of DFT calculations show that BaTiO3 and Cu2O have staggered type band alignment after the heterojunction formation and high mobility of electrons in Cu2O as compared to the electrons in BaTiO3. Staggered type band edges alignment and high mobility of electrons and holes improved the separation of photo-generated charge carriers in BaTiO3/Cu2O heterojunction. To validate the theoretical results experiments were carried out on pristine BaTiO3, Cu2O and BaTiO3/Cu2O heterojunction with varying thickness of Cu2O. All samples were characterized by X- Ray Diffractometer, SEM and UV–Vis spectrometry. Nanostructured thin films of pristine BaTiO3, Cu2O and BaTiO3/Cu2O heterojunction were used as photoelectrode in the photoelectrochemical cell for water splitting reaction. Maximum photocurrent density of 1.44 mA/cm2 at 0.90 V/SCE was exhibited by 442 nm thick BaTiO3/Cu2O heterojunction photoelectrode Increased photocurrent density and enhanced photoconversion efficiency, exhibited by the heterojunction may be attributed to improved conductivity and enhanced separation of the photogenerated carriers at the BaTiO3/Cu2O interface. The experimental results and first-principles calculations compare well, thus suggesting that such calculations have the potential to be used in screening various metal oxide heterojunction before performing the experiments thereby saving precious chemicals, time and energy. Keywords: Photoelectrochemical, Water splitting, heterojunction, Cu2O, BaTiO3 References: [1] Surbhi Choudhary, et al. Nanostructured bilayered thin films in photoelectrochemical water splitting - A review: International Journal of Hydrogen Energy, (2012). [2] Dipika Sharma, Anuradha Verma, V.R. Satsangi, Rohit shrivastav, Sahab Dass Nanostructured SrTiO3 thin films sensitized by Cu2O for Photoelectrochemical Hydrogen Generation. International journal of Hydrogen Energy;42:,4230-4241, 2014.
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