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In situ seed layer bandgap engineering leading to the conduction band offset reversion and efficient Sb_(2)Se_(3)solar cells with high open-circuit voltage
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作者 yanting jiang Weiyu Wang +7 位作者 Zhirong Chen Zhenyu Fang Qiqiang Zhu Qiao Zheng Jionghua Wu Hui Deng Weihuang Wang Shuying Cheng 《Journal of Energy Chemistry》 2025年第2期201-212,I0006,共13页
Sb_(2)Se_(3)solar cells have achieved a power conversion efficiency(PCE)of over 10%.However,the serious open-circuit voltage deficit(VOC-deificit),induced by the hard-to-control crystal orientation and heterojunction ... Sb_(2)Se_(3)solar cells have achieved a power conversion efficiency(PCE)of over 10%.However,the serious open-circuit voltage deficit(VOC-deificit),induced by the hard-to-control crystal orientation and heterojunction interface reaction,limits the PCE of vapor transport deposition(VTD)processed Sb_(2)Se_(3)solar cells.To overcome the VOC-deficit problem of VTD processed Sb_(2)Se_(3)solar cells,herein,an in-situ bandgap regulation strategy is innovatively proposed to prepare a wide band gap Sb2(S,Se)3seed layer(WBSL)at CdS/Sb_(2)Se_(3)heterojunction interface to improve the PCE of Sb_(2)Se_(3)solar cells.The analysis results show that the introduced Sb2(S,Se)3seed layer can enhance the[001]orientation of Sb_(2)Se_(3)thin films,broaden the band gap of heterojunction interface,and realize a"Spike-like"conduction band alignment with ΔE_(c)=0.11 eV.In addition,thanks to the suppressed CdS/Sb_(2)Se_(3)interface reaction after WBSL application,the depletion region width of Sb_(2)Se_(3)solar cells is widened,and the quality of CdS/Sb_(2)Se_(3)interface and the carrier transporting performance of Sb_(2)Se_(3)solar cells are significantly improved as well.Moreover,the harmful Se vacancy defects near the front interface of Sb_(2)Se_(3)solar cells can be greatly diminished by WBSL.Finally,the PCE of Sb_(2)Se_(3)solar cells is improved from 7.0%to 7.6%;meanwhile the VOCis increased to 466 mV which is the highest value for the VTD derived Sb_(2)Se_(3)solar cells.This work will provide a valuable reference for the interface and orientation regulation of antimony-based chalcogenide solar cells. 展开更多
关键词 Seed-layer Crystal orientation Carrier transport Open circuit voltage deficit Band gap alignment
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靶向B7-H3的实体瘤免疫治疗新进展
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作者 吴硕 贺炜 +3 位作者 胡鹏武 惠开元 江艳婷 蒋晓东 《中国肿瘤临床》 CSCD 北大核心 2024年第24期1291-1295,共5页
B7H3作为免疫球蛋白超家族B7家族的成员,在肿瘤组织中异常表达,可被免疫细胞诱导表达,而在正常组织中低表达或不表达。B7-H3以诱导肿瘤恶性行为并通过多种复杂途径推动癌症进展的特性受到关注。以B7-H3为靶点的免疫疗法通过改变免疫系... B7H3作为免疫球蛋白超家族B7家族的成员,在肿瘤组织中异常表达,可被免疫细胞诱导表达,而在正常组织中低表达或不表达。B7-H3以诱导肿瘤恶性行为并通过多种复杂途径推动癌症进展的特性受到关注。以B7-H3为靶点的免疫疗法通过改变免疫系统增强抗肿瘤免疫反应,在临床试验中展示出显著疗效。本文梳理B7-H3在人体各种系统肿瘤中的异常表达及其影响,并总结B7-H3在免疫治疗中的角色,以此反映出靶向B7-H3的临床研究新进展。这些发现表明,B7-H3具有作为未来肿瘤诊断和治疗靶点的巨大价值。 展开更多
关键词 B7-H3 免疫治疗 实体瘤 联合治疗 综述
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