铜锌锡硫薄膜电池器件物理与系统集成
项目来源
国(略)研(略)((略)D(略)
项目主持人
潘(略)
项目受资助机构
中(略)
立项年度
2(略)
立项时间
未(略)
项目编号
未(略)
项目级别
国(略)
研究期限
未(略) (略)
受资助金额
未(略)
学科
战(略)际(略)新(略)点(略)
学科代码
未(略)
基金类别
未(略)
关键词
器(略) (略)面(略)率(略)体(略)缺(略) (略)制(略)稳(略)试(略)d(略)c(略)i(略)a(略)n(略)i(略)r(略)e(略)c(略)i(略)i(略)v(略)c(略) (略)u(略)d(略)r(略) (略)e(略) (略)e(略) (略)h(略)s(略) (略)b(略)t(略)e(略)r(略)n(略)
参与者
未(略)
参与机构
未(略)
项目标书摘要:本课(略)目《铜锌锡硫薄膜太(略)究》所属课题4《铜(略)与系统集成》。本课(略)电池器件的光管理,(略)数,建立光学模型,(略)准效率的铜锌锡硫((略)行模拟仿真,得到了(略)果。并通过优化透明(略))层的制备工艺实现(略)层沉积。针对铜锌锡(略)输运机制,通过分析(略)序对于CZTS太阳(略)了解决相关问题后开(略)。之后,通过对世界(略)池器件建模分析发现(略)提升电池的开路电压(略)12.5%的纯硒化(略)表征和建模分析,发(略)碍效率提升的重要因(略)池的异质结界面和衰(略)CdS)缓冲层的C(略)仿真,分析异质结复(略)—锌(Cu-Zn)(略)阳能电池性能的影响(略)。并且进一步通过模(略)镉(ZnCdS)作(略)响。最后,研究了通(略)CZTS/ZnCd(略)锌(ZnS)钝化层(略)艺优化最终得到了效(略)薄膜太阳电池。
Applicati(略): This un(略)2ZnSnS4 t(略)vice phys(略)tem integ(略)ongs to t(略) key R&D (略)China nam(略)tal Resea(略)ciency Im(略)f Cu2ZnSn(略)m Solar C(略)ly,this u(略) the opti(略)ers of ea(略)al layer (略)4(CZTS)th(略)ar cells (略)h an opti(略)nd calcul(略) losses.M(略)ults that(略)ar to act(略)ments wer(略)A transpa(略)tive laye(略)low resis(略)igh trans(略)s realize(略)zing the (略) process.(略)he carrie(略) mechanis(略)hin-film (略),the theo(略)el of ope(略)oltage(Vo(略)ving rela(略)s was obt(略) analyzin(略)ence of h(略)on recomb(略) disorder(略)formance (略)ar cells.(略)hrough mo(略)analysis (略)d-record (略),it was f(略)he hetero(略)at-treatm(略)ffectivel(略)he Voc an(略)or(FF)of (略)Through t(略)rization (略)g analysi(略)elenide C(略)evices wi(略)iency of (略) found th(略)mbination(略)erojuncti(略)portant f(略)ring effi(略)ovement.A(略)e heteroj(略)erface an(略)hanism of(略) cells,CZ(略)lls using(略) layers w(略)ed to ana(略)fect of h(略)on recomb(略)e,carrier(略)nd Cu-Zn (略) the perf(略)CZTS sola(略) optimize(略)arameters(略)ned.Furth(略)effect of(略)buffer la(略)device pe(略)as invest(略)ugh simul(略)ly,self-a(略)noscale Z(略)ion layer(略)S/ZnCdS i(略) adjustin(略)nt conten(略)sorber la(略)died.Comb(略)he experi(略)ess optim(略) CZTS thi(略)r cell wi(略)iency of (略) obtained(略)
项目受资助省
湖(略)
- (略)
