Design and fabrication of photovoltaics based on MFS (Ag/BaTiO3/silicon p-type) structure

Irzaman , M. Dahrul , M. Rahmani , A.M. Rukyati , Samsidar , Nurhidayah , F. Deswardani , M. Peslinof , R.P. Jenie , J. Iskandar , Y. Wahyuni , K. Priandana , R. Siskandar
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Abstract

The experiment was carried out by growing BaTiO3 (Undoped or Li-doped) on p-type Si(1 0 0) substrates using the Chemical Solution Deposition (CSD) method and spin coating at a rotational speed of 3000 rpm for 60 s, followed by heating at 850 °C. The characterization results show that the bandgap energy value of the thin film due to lithium doping reduces the bandgap energy value. This is presumably because the donor atom added to a semiconductor causes the allowable energy level to be slightly below the conduction band. The presence of this new band causes the thin film bandgap energy to decrease with a five-valent tantalum dip. The morphological properties showed that the BaTiO3/Si(1 0 0) thin film particles in the deposited lithium had a fairly homogeneous grain. With the addition of lithium acetate as a binder into barium titanate, the grain size is getting smaller because it is suspected that the lithium-ion radius is smaller than the barium-ion radius. Measurement of I-V on the thin film shows that the output voltage value increases with more light intensity hitting the surface of the thin film. The greater the light intensity, the greater the energy of the photons, so the electrons are easier to jump. The three things above (both electrical and morphological properties) conclude that the thin films grown have the potential for photovoltaics.

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基于MFS(Ag/BaTiO3/硅p型)结构的光伏器件的设计与制造
实验采用化学溶液沉积(CSD)方法在p型Si(1 00)衬底上生长BaTiO3(未掺杂或掺锂),并以3000 rpm转速旋转60 s,然后在850℃下加热。表征结果表明,锂掺杂使薄膜的带隙能量值降低。这大概是因为添加到半导体中的供体原子使允许的能级略低于传导带。这种新能带的存在导致薄膜带隙能量随着五价钽的下降而降低。形貌表征表明,沉积锂中的BaTiO3/Si(1 0 0)薄膜颗粒具有较均匀的晶粒。在钛酸钡中加入醋酸锂作为粘结剂后,由于怀疑锂离子半径小于钡离子半径,钛酸钡晶粒尺寸越来越小。薄膜上的I-V测量表明,随着照射到薄膜表面的光强增加,输出电压值也随之增加。光强越大,光子的能量就越大,所以电子更容易跳跃。以上三点(电学和形态学性质)表明,生长的薄膜具有光伏发电的潜力。
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来源期刊
Materials Science for Energy Technologies
Materials Science for Energy Technologies Materials Science-Materials Science (miscellaneous)
CiteScore
16.50
自引率
0.00%
发文量
41
审稿时长
39 days
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