Characterization of photovoltaics with In2S3 nanoflakes/p-Si heterojunction

被引:0
作者
Yu-Jen Hsiao
Chung-Hsin Lu
Liang-Wen Ji
Teen-Hang Meen
Yan-Lung Chen
Hsiao-Ping Chi
机构
[1] National Nano Device Laboratories,Department of Chemical Engineering
[2] National Taiwan University,Institute of Electro
[3] National Formosa University,Optical and Materials Science
[4] National Formosa University,Department of Electronic Engineering
[5] Nan Jeon Institute of Technology,Department of Electrical Engineering
来源
Nanoscale Research Letters | / 9卷
关键词
Heterojunction; Nanoflake; In; S;
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摘要
We demonstrate that heterojunction photovoltaics based on hydrothermal-grown In2S3 on p-Si were fabricated and characterized in the paper. An n-type In2S3 nanoflake-based film with unique 'cross-linked network’ structure was grown on the prepared p-type silicon substrate. It was found that the bandgap energy of such In2S3 film is 2.5 eV by optical absorption spectra. This unique nanostructure significantly enhances the surface area of the In2S3 films, leading to obtain lower reflectance spectra as the thickness of In2S3 film was increased. Additionally, such a nanostructure resulted in a closer spacing between the cross-linked In2S3 nanostructures and formed more direct conduction paths for electron transportation. Thus, the short-circuit current density (J sc) was effectively improved by using a suitable thickness of In2S3. The power conversion efficiency (PCE, η) of the AZO/In2S3/textured p-Si heterojunction solar cell with 100-nm-thick In2S3 film was 2.39%.
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[1]  
Cansizoglu MF(2010)High optical absorption of indium sulfide nanorod arrays formed by glancing angle deposition ACS Nano 4 733-740
[2]  
Engelken R(2008)Hydrothermal synthesis and photoluminescent properties of stacked indium sulfide superstructures Chem Commun 12 1476-1478
[3]  
Seo HW(2011)Density functional theory study the effects of point defects in β-In J Mater Chem 21 10518-10524
[4]  
Karabacak T(1975)S J Cryst Growth 28 306-371
[5]  
Xing Y(2010)Vapour growth of three In J Phys D: Appl phys 43 415301-432
[6]  
Zhang HJ(2009)S Sol Energy 83 363-443
[7]  
Song SY(2011) modifications by iodine transport J Mater Chem 21 12824-109
[8]  
Feng J(2003)The study of surface photoconductive response in indium sulfide crystals Thin Solid Films 354 431-1268
[9]  
Lei YQ(2010)Indium sulfide and relatives in the world of photovoltaics App Phys Lett 96 184101-825
[10]  
Zhao LJ(2012) fabrication of chalcogenide nanoflake arrays for hybrid solar cells: the case of In Nanoscale 4 2372-68