[1]徐迪愷 余學(xué)功 楊德仁.石墨烯-晶體硅光伏器件的研究進(jìn)展 [J].中國材料進(jìn)展,2015,(預(yù)先出版):001-5.
XU Dikai,YU Xuegong,YANG Deren.Progress of Graphene-Silicon photovoltaic devices [J].MATERIALS CHINA,2015,(預(yù)先出版):001-5.
點(diǎn)擊復(fù)制
石墨烯-晶體硅光伏器件的研究進(jìn)展 ()
中國材料進(jìn)展[ISSN:1674-3962/CN:61-1473/TG]
- 卷:
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- 期數(shù):
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2015年預(yù)先出版期
- 頁碼:
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001-5
- 欄目:
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特約研究論文
- 出版日期:
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2015-10-15
文章信息/Info
- Title:
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Progress of Graphene-Silicon photovoltaic devices
- 作者:
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徐迪愷 余學(xué)功 楊德仁
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浙江大學(xué)硅材料國家重點(diǎn)實(shí)驗(yàn)室
- Author(s):
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XU Dikai; YU Xuegong; YANG Deren
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State Key Laboratory of Silicon Materials
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- 關(guān)鍵詞:
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石墨烯; 硅; 太陽能電池; 摻雜; 界面
- 文獻(xiàn)標(biāo)志碼:
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A
- 摘要:
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隨著化石能源的日益枯竭,能源問題成為當(dāng)今世界要解決的首要問題。在將來的世界能源結(jié)構(gòu)中,太陽能有望占據(jù)主導(dǎo)地位。石墨烯是已知材料中載流子移動(dòng)速度最快的,化學(xué)穩(wěn)定性好,且在可見光波段具有極高的透光性,非常適合應(yīng)用于光伏領(lǐng)域。石墨烯-硅太陽能電池是一種新型的硅基肖特基結(jié)太陽能電池,具有制備工藝簡單,制作成本低等特點(diǎn),應(yīng)用潛力巨大。自2010年首次報(bào)道以來,該器件的光電轉(zhuǎn)換效率已由1.65%迅速提升至15.6%,得到了廣泛的關(guān)注。本文簡要介紹了石墨烯-硅太陽能電池的基本結(jié)構(gòu)和工作原理,從硅表面反射率優(yōu)化、石墨烯導(dǎo)電性和功函數(shù)優(yōu)化、石墨烯-硅界面優(yōu)化和n型石墨烯-硅太陽能電池等4個(gè)方面概述了石墨烯-硅太陽能電池的發(fā)展歷程、研究現(xiàn)狀和未來趨勢。
- Abstract:
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Since the fossil fuels are exhausting, energy issue becomes the primary problem for the whole world. Solar energy is supposed to prevail in the future world energy structure. Graphene, which has the fastest carrier mobility among known materials, is of brilliant chemical stability and highly transparency in the visible light range. Therefore, Graphene is suitable material for photovoltaic applications. Graphene-Silicon(Gr-Si) solar cell, which is a new kind Si-based Schottky junction solar cell, has a great application potential due to its simple and low-cost fabrication method. Since it was first reported in year of 2010, the Gr-Si solar cell has attracted considerable interests. Rapid developments of power converse efficiency from 1.65% to 15.6% have been witnessed. In this article, the device structure and working mechanism of Gr-Si solar cells are introduced. Meanwhile, recent development and breakthroughs concerning optimization in reflection of Si surface, work function and conductance of Gr films, quality of Gr-Si interface and n-Gr/p-Si solar cells have been reviewed.
更新日期/Last Update:
2015-07-31