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Potential of quasi-inverted pyramid with both efficient light trapping and sufficient wettability for ultrathin c-Si/PEDOT:PSS hybrid solar cells
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Affiliation of Author(s):材料科学与技术学院

Journal:SOLAR ENERGY MATERIALS AND SOLAR CELLS

Key Words:Ultrathin c-Si PEDOT:PSS/c-Si solar cell Efficient light trapping Hydrophilic

Abstract:In this paper, a simple and cost-effective wet chemical method is presented to form quasi-inverted pyramids (QIP) on ultrathin c-Si for efficient light trapping and sufficient wettability. The QIP is fabricated by a well-known two-step Ag assisted chemical etching method followed by a post nanostructure rebuilding (NSR) process. The variation of [Ag+] realizes the modulation of QIP size from sub-micro scale to micro scale. The comparable average absorptance value of 50 pm c-Si with double-sided QIP fabricated under 0.5 mM [Ag+] (QIP-50) to that of 182 pm c-Si with double-sided conventional micro-scale pyramid in the spectral range of 300 - 1100 nm demonstrates an over 3.6-fold reduction in material usage. In comparison with nanopores-structured light-trapping configuration, the QIP-50 possesses much smaller specific surface area of similar to 2.39, which alleviates the surface recombination losses. After wet oxidation treatment, the water contact angle (WCA) of QIP-50 (35.73 degrees) can achieve a comparable value to that of wet oxidized polished wafer (33.30 degrees), demonstrating sufficient wettability of the QIP for high efficiency ultrathin c-Si/PEDOT:PSS hybrid solar cells. The finding of QIP with both efficient light trapping and superior wettability provides a new opportunity to improve the performance of ultrathin c-Si/PEDOT:PSS hybrid solar cells with a simple process at low cost.

ISSN No.:0927-0248

Translation or Not:no

Date of Publication:2017-09-01

Co-author:姚函妤,高凯,郑超凡,杨汪扬,Lily,Youwen Liu,张磊,zl

Correspondence Author:shl

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Researcher
Supervisor of Doctorate Candidates

Main positions:江苏省真空学会常务理事-江苏省光伏科学与工程协同创新中心副理事长-南京市可再生能源学会副理事长

Other Post:亚太材料科学院院士 (2013年10月)

Gender:Male

Alma Mater:中国科学院上海冶金研究所

Education Level:With Certificate of Graduation for Doctorate Study

Degree:Doctoral Degree in Science

School/Department:College of Material Science and Technology

Discipline:Material Science. Physics

Business Address:南京航空航天大学将军路校区西区材料学院大楼D10-B317

Contact Information:18913854729

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