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First‑principles study on electronic structure,optical and magnetic properties of rare earth elements X(X=Sc,Y,La,Ce,Eu)doped with two‑dimensional GaSe 被引量:3
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作者 QIU Shenhao XIAO Qingquan +1 位作者 tang huazhu XIE Quan 《无机化学学报》 SCIE CAS CSCD 北大核心 2024年第11期2250-2258,共9页
The electronic structure,magnetic,and optical properties of two-dimensional(2D)GaSe doped with rare earth elements X(X=Sc,Y,La,Ce,Eu)were calculated using the first-principles plane wave method based on den-sity funct... The electronic structure,magnetic,and optical properties of two-dimensional(2D)GaSe doped with rare earth elements X(X=Sc,Y,La,Ce,Eu)were calculated using the first-principles plane wave method based on den-sity functional theory.The results show that intrinsic 2D GaSe is a p-type nonmagnetic semiconductor with an indi-rect bandgap of 2.6611 eV.The spin-up and spin-down channels of Sc-,Y-,and La-doped 2D GaSe are symmetric,they are non-magnetic semiconductors.The magnetic moments of Ce-and Eu-doped 2D GaSe are 0.908μ_(B)and 7.163μ_(B),which are magnetic semiconductors.Impurity energy levels appear in both spin-up and spin-down chan-nels of Eu-doped 2D GaSe,which enhances the probability of electron transition.Compared with intrinsic 2D GaSe,the static dielectric constant of the doped 2D GaSe increases,and the polarization ability is strengthened.The ab-sorption spectrum of the doped 2D GaSe shifts in the low-energy direction,and the red-shift phenomenon occurs,which extends the absorption spectral range.The optical reflection coefficient of the doped 2D GaSe is improved in the low energy region,and the improvement of Eu-doped 2D GaSe is the most obvious. 展开更多
关键词 first principle two-dimensional GaSe electronic structure magnetic property optical property
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以Spiro-OMeTAD作为空穴传输层的ZnS/SnS太阳能电池模拟研究
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作者 唐华著 肖清泉 +1 位作者 付莎莎 谢泉 《人工晶体学报》 CAS 北大核心 2024年第8期1394-1408,共15页
硫化亚锡(SnS)因其合适的电学和光学特性而被作为太阳能电池的吸收层进行研究。Spiro-OMeTAD常用作空穴传输层以提高太阳能电池性能。本文采用wxAMPS软件对SnS基太阳能电池ZnS/SnS/Spiro-OMeTAD进行模拟研究。主要研究分析Spiro-OMeTAD... 硫化亚锡(SnS)因其合适的电学和光学特性而被作为太阳能电池的吸收层进行研究。Spiro-OMeTAD常用作空穴传输层以提高太阳能电池性能。本文采用wxAMPS软件对SnS基太阳能电池ZnS/SnS/Spiro-OMeTAD进行模拟研究。主要研究分析Spiro-OMeTAD空穴传输层对太阳能电池性能的影响,其中包括:开路电压、短路电流密度、填充因子、光电转换效率及量子效率。研究结果表明:在加入Spiro-OMeTAD空穴传输层后,ZnS/SnS/Spiro-OMeTAD太阳能电池的开路电压(V_(OC))增加至0.958 V,短路电流(J_(SC))增加到32.96 mA/cm^(2),填充因子(FF)和光电转换效率(PCE)分别达到了79.26%和25.07%,电池性能取决于电池各层厚度、掺杂浓度、缺陷态密度及工作温度。通过研究表明Spiro-OMeTAD作为空穴传输层,有利于提高太阳能电池的各性能,并且ZnS/SnS/Spiro-OMeTAD是一种十分具有发展潜力的光伏器件结构。 展开更多
关键词 硫化亚锡 硫化锌 Spiro-OMeTAD 空穴传输层 异质结太阳能电池 wxAMPS 缺陷
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