化工技术与开发
化工技術與開髮
화공기술여개발
Technology & Development of Chemical Industry
2015年
9期
40-45
,共6页
杨林%左智翔%于凤琴%纪三郝%王天华%王鸣魁
楊林%左智翔%于鳳琴%紀三郝%王天華%王鳴魁
양림%좌지상%우봉금%기삼학%왕천화%왕명괴
钙钛矿电池%光电转换效率%异质结%空穴传输层%碳电极
鈣鈦礦電池%光電轉換效率%異質結%空穴傳輸層%碳電極
개태광전지%광전전환효솔%이질결%공혈전수층%탄전겁
perovskite solar battery%photoelectric conversion efficiency%heterojunction%hole transmission layer%carbon electrode
近年来,得益于钙钛矿材料突出的光学和电学特性,全固态钙钛矿基太阳电池效率不断取得突破,现已超过20%。业界纷纷期待着钙钛矿电池的产业化前景。文章介绍了钙钛矿作为光电材料的一些光学、电学性能,回顾了钙钛矿电池的发展历程。围绕基本结构,论述了钙钛矿电池中的基本光电转换过程,并对各种衍生结构的钙钛矿电池进行了罗列、分类,重点介绍了无空穴传输层的钙钛矿电池,阐明了无空穴传输层电池在稳定性和使用寿命、成本控制等关键问题上的优势所在,同时基于廉价碳电极的无空穴传输层太阳电池效率也已接近15%,且仍有较大提升空间。
近年來,得益于鈣鈦礦材料突齣的光學和電學特性,全固態鈣鈦礦基太暘電池效率不斷取得突破,現已超過20%。業界紛紛期待著鈣鈦礦電池的產業化前景。文章介紹瞭鈣鈦礦作為光電材料的一些光學、電學性能,迴顧瞭鈣鈦礦電池的髮展歷程。圍繞基本結構,論述瞭鈣鈦礦電池中的基本光電轉換過程,併對各種衍生結構的鈣鈦礦電池進行瞭囉列、分類,重點介紹瞭無空穴傳輸層的鈣鈦礦電池,闡明瞭無空穴傳輸層電池在穩定性和使用壽命、成本控製等關鍵問題上的優勢所在,同時基于廉價碳電極的無空穴傳輸層太暘電池效率也已接近15%,且仍有較大提升空間。
근년래,득익우개태광재료돌출적광학화전학특성,전고태개태광기태양전지효솔불단취득돌파,현이초과20%。업계분분기대착개태광전지적산업화전경。문장개소료개태광작위광전재료적일사광학、전학성능,회고료개태광전지적발전역정。위요기본결구,논술료개태광전지중적기본광전전환과정,병대각충연생결구적개태광전지진행료라렬、분류,중점개소료무공혈전수층적개태광전지,천명료무공혈전수층전지재은정성화사용수명、성본공제등관건문제상적우세소재,동시기우렴개탄전겁적무공혈전수층태양전지효솔야이접근15%,차잉유교대제승공간。
Recently, some breakthroughs about the efficiency of total solid perovskite solar battery had been made constantly, due to the outstanding optical and electrical characteristics of perovskite material. The efficiency of total solid perovskite solar battery now was up to 20%, so more expectations had been laid on the industrialization prospect of perovskite solar cells industry. In paper, some optical and electrical characteristics of perovskite material are mentioned and the development course of perovskite solar cells was also reviewed. Meanwhile, the basic photoelectric conversion process of perovskite solar cells was discussed, based on the nomal structure. And all kinds of grows structure about perovskite solar cells was classified by order, what was more, no-hole transmission layer about perovskite solar cells was discussed specially, then the advantage of industry properties about no-hole transmission layer perovskite solar cells was described, such as stability, service life and cost control. In this condition, the efficiency of no-hole transmission layer perovskite solar cells made by cheap carbon electrode was about to 15%, more improve space could be expected in future.