沈鸿烈
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Nanostructure-induced fast texturization of mono-crystalline silicon in low-concentration alkaline solution
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Affiliation of Author(s):材料科学与技术学院

Journal:Mater Sci Semicond Process

Abstract:Silicon solar cells have been center of focus over the decades while the price challenge still hinders its large-scale application. Cost reduction is the urgent pursuit and our work focuses on the texturization process for mono-crystalline silicon. In this report, nanostructures made by metal-assisted chemical etching (MACE) method were introduced before texturization in low-concentration alkaline solution, which shows the advantage in controlling uniformity and thickness losses compared with standard-concentration alkaline solution. By varying MACE etching time, black silicon layers with different morphologies and depths were obtained. Consequently, pyramid structures of different sizes were observed after texturizaiton. Minimum reflectance value of 10.3% and mean pyramid size of 2.95 µm were achieved in low-concentration alkaline solution with optimized MACE etching time. By using SEM, PL and analytical balance to analyze the morphologies of black silicon samples and corresponding thickness losses, we speculated that the nanostructures of black silicon layers acted as the preferential sites for etching, thus accelerated the texturization process and completed within only 10 min. In summary, low-concentration, short-time and less silicon consumption texturization for mono-crystalline silicon could be achieved using our one-step MACE-induced method, exhibiting great potential in commercial photovoltaics utilization and ultra-thin silicon solar cells. © 2019

ISSN No.:1369-8001

Translation or Not:no

Date of Publication:2019-05-01

Co-author:Yang, Jiale,Sun, Luanhong

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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