光伏文献调查(第 190 号)

IF 8 2区 材料科学 Q1 ENERGY & FUELS
Ziv Hameiri
{"title":"光伏文献调查(第 190 号)","authors":"Ziv Hameiri","doi":"10.1002/pip.3795","DOIUrl":null,"url":null,"abstract":"<p>Hu F, Mou S, Wei S, et al <b>Research on the evolution of China's photovoltaic technology innovation network from the perspective of patents.</b> <i>Energy Strategy Reviews</i> 2024; <b>51</b>: 101309.</p><p>De Keersmaecker M, Tirado J, Armstrong NR, et al <b>Defect quantification in metal halide perovskites anticipates photoluminescence and photovoltaic performance.</b> <i>Acs Energy Letters</i> 2024; <b>9</b>(1): 243–252.</p><p>Wang S, Wang C, Ge Y, et al <b>In-depth analysis of photovoltaic module parameter estimation.</b> <i>Energy</i> 2024; <b>291</b>: 130345.</p><p>Cao Y, Pang D, Zhao Q, et al <b>Improved YOLOv8-GD deep learning model for defect detection in electroluminescence images of solar photovoltaic modules.</b> <i>Engineering Applications of Artificial Intelligence</i> 2024; <b>131</b>: 107866.</p><p>Musiienko A, Yang FJ, Gries TW, et al <b>Resolving electron and hole transport properties in semiconductor materials by constant light-induced magneto transport.</b> <i>Nature Communications</i> 2024; <b>15</b>(1): 316.</p><p>Qin Y, Yonemoto A, Gotoh K, et al <b>Potential-induced degradation phenomena in single-encapsulation crystalline Si photovoltaic modules.</b> <i>Japanese Journal of Applied Physics</i> 2024; <b>63</b>(2): 02SP11.</p><p>Chen W, Liu W, Yu Y, et al <b>Study on selective emitter fabrication through an innovative pre-diffusion process for enhanced efficiency in TOPCon solar cells.</b> <i>Progress in Photovoltaics: Research and Applications</i> 2024; <b>32</b>(3): 199–211.</p><p>Chen S, Shi J, Yao Y, et al <b>Enhancement of short-circuit current density in silicon heterojunction solar cells by hydrogenated multiple-doped In</b><sub><b>2</b></sub><b>O</b><sub><b>3</b></sub> <b>thin films.</b> <i>Solar Energy Materials and Solar Cells</i> 2024; <b>267</b>: 112727.</p><p>Hossain MJ, Sun M, Davis KO. <b>Photon management in silicon photovoltaic cells: A critical review.</b> <i>Solar Energy Materials and Solar Cells</i> 2024; <b>267</b>: 112715.</p><p>Li Y, Shi B, Xu Q, et al <b>CsCl induced efficient fully-textured perovskite/crystalline silicon tandem solar cell.</b> <i>Nano Energy</i> 2024; <b>122</b>: 109285.</p><p>Ravidas BK, Das A, Agnihotri SK, et al <b>Design principles of crystalline silicon/CsGeI</b><sub><b>3</b></sub> <b>perovskite tandem solar cells using a combination of density functional theory and SCAPS-1D frameworks.</b> <i>Solar Energy Materials and Solar Cells</i> 2024; <b>267</b>: 112688.</p><p>Du B, Ma MY, Zhang PP, et al <b>High-performance all-small-molecule organic solar cells fabricated via halogen-free preparation process.</b> <i>Acs Applied Materials and Interfaces</i> 2024; <b>16</b>(2): 2564–2,572.</p><p>Fan B, Gao H, Jen AK. <b>Biaxially conjugated materials for organic solar cells.</b> <i>Acs Nano</i> 2024; <b>18</b>(1): 136–154.</p><p>Kim JH, Park B, Song S, et al <b>Stretchable and transparent nanopillar arrays for high-performance ultra-flexible organic photovoltaics.</b> <i>Applied Physics Letters</i> 2024; <b>124</b>(2): 023301.</p><p>Zhang L, Guo X, Deng W, et al <b>Regulating pre-aggregation in non-halogenated solvent to enhance the efficiency of organic solar cells.</b> <i>Applied Physics Letters</i> 2024; <b>124</b>(1): 013902.</p><p>Lee MJ, Park JS, Kim TH, et al <b>Tailoring hole-selective contacts via self-assembled monolayers for advancing indoor organic photovoltaic and capacitor devices.</b> <i>Chemical Engineering Journal</i> 2024; <b>481</b>: 148481.</p><p>Kang X, Bi FZ, Ding XQ, et al <b>Structure–activity relationship between crystallinity and carrier transport of two-dimensional donor units in organic solar cells.</b> <i>Journal of Physical Chemistry Letters</i> 2024; <b>15</b>(2): 514–524.</p><p>Tran DK, West SM, Guo JJ, et al <b>Chain length dependence of electron transport in an n-type conjugated polymer with a rigid-rod chain topology.</b> <i>Journal of the American Chemical Society</i> 2024; <b>146</b>(2): 1435–1,446.</p><p>Xia J, Jin J, Zheng D, et al <b>NiSe</b><sub><b>2</b></sub><b>-CoSe</b><sub><b>2</b></sub> <b>hollow polyhedron as counter electrode catalyst for high-efficiency dye-sensitized solar cells.</b> <i>Applied Surface Science</i> 2024; <b>651</b>: 159176.</p><p>Kamesh S, Athithya S, Harish S, et al <b>Nitrogen-doped reduced graphene oxide enfolded zinc cobaltite micro flowers as efficient triiodide reduction for a platinum-free counter electrode in dye-sensitized solar cell applications.</b> <i>Electrochimica Acta</i> 2024; <b>475</b>: 143262.</p><p>Elnemr AM, Ghander AM, El-Sayed IA, et al <b>The effect of different concentrations of molybdenum trioxide in electrolyte for dye-sensitized solar cells (DSSCs): Performance enhancement of DSSCs.</b> <i>IEEE Journal of Photovoltaics</i> 2024; <b>14</b>(1): 99–106.</p><p>Asghar H, Riaz T, Mannan HA, et al <b>Rheology and modeling insights into dye-sensitized solar cells (DSSCs) material: Bridging the gap to solar energy advancements.</b> <i>Renewable and Sustainable Energy Reviews</i> 2024; <b>193</b>: 114298.</p><p>Roy P, Vats AK, Tang L, et al <b>Controlling adsorption of two dyes on TiO</b><sub><b>2</b></sub> <b>surface to improve the efficiency of see-through dye-sensitized solar cells.</b> <i>Solar Energy</i> 2024; <b>269</b>: 112339.</p><p>Chen B, Yu R, Xing G, et al <b>Dielectric engineering of 2D organic–inorganic hybrid perovskites.</b> <i>Acs Energy Letters</i> 2024; <b>9</b>(1): 226–242.</p><p>Guo XM, Lu CY, Zhang WX, et al <b>In situ surface sulfidation of CsPbI</b><sub><b>3</b></sub> <b>for inverted perovskite solar cells.</b> <i>Acs Energy Letters</i> 2024; <b>9</b>(1): 329–335.</p><p>Jiang J, You J, Liu SF, et al <b>Scale-up solutions of 2D perovskite photovoltaics: Insights of multiscale structures.</b> <i>Acs Energy Letters</i> 2024; <b>9</b>(1): 17–29.</p><p>Szabó G, Kamat PV. <b>How cation migration across a 2D/3D interface dictates perovskite solar cell efficiency.</b> <i>Acs Energy Letters</i> 2024; <b>9</b>(1): 193–200.</p><p>Hu P, Zhou W, Chen J, et al <b>Multidentate anchoring strategy for synergistically modulating crystallization and stability towards efficient perovskite solar cells.</b> <i>Chemical Engineering Journal</i> 2024; <b>480</b>: 148249.</p><p>Liu H, Liu T, Ma X, et al <b>Regulation on electron density distribution of organic molecule passivator enables efficient and stable perovskite solar cells.</b> <i>Chemical Engineering Journal</i> 2024; <b>480</b>: 148320.</p><p>Tian K, Chen M, Liu H, et al <b>Interfacial bidirectional binding for improving photovoltaic performance of perovskite solar cells.</b> <i>Chemical Engineering Journal</i> 2024; 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<b>267</b>: 112719.</p><p>Liu X, Abbas A, Togay M, et al <b>The effect of remnant CdSe layers on the performance of CdSeTe/CdTe photovoltaic devices.</b> <i>Solar Energy Materials and Solar Cells</i> 2024; <b>267</b>: 112717.</p><p>Hao MM, Ding SS, Gaznaghi S, et al <b>Perovskite quantum dot solar cells: Current status and future outlook.</b> <i>Acs Energy Letters</i> 2024; <b>9</b>(1): 308–322.</p><p>Maleki J, Eskandari M, Fathi D. <b>New design and optimization of half-tandem quantum dot solar cell: Over 30% power conversion efficiency using nanostructure oriented core-shell.</b> <i>Renewable Energy</i> 2024; <b>222</b>: 119938.</p><p>Ahn H. <b>A framework for developing data-driven correction factors for solar PV systems.</b> <i>Energy</i> 2024; <b>290</b>: 130096.</p><p>Xu L, Ding P, Zhang Y, et al <b>Sensitivity analysis of the shading effects from obstructions at different positions on solar photovoltaic panels.</b> <i>Energy</i> 2024; <b>290</b>: 130229.</p><p>Ahluwalia D, Anjum S, Mukherjee V. <b>Comprehensive analysis of line losses and valuation of energy savings in optimized photovoltaic array subjected to partial shadings.</b> <i>Energy Conversion and Management</i> 2024; 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A discrepancy study in Guangdong-Hong Kong-Macao GBA.</b> <i>Energy Reports</i> 2024; <b>11</b>: 1088–1,099.</p><p>An M, Sun X. <b>Carbon footprints of solar panels in China provinces based on different production and waste treatment scenarios.</b> <i>Journal of Cleaner Production</i> 2024; <b>435</b>: 140453.</p><p>Carroll P, Singh B, Mangina E. <b>Uncovering gender dimensions in energy policy using Natural Language Processing.</b> <i>Renewable and Sustainable Energy Reviews</i> 2024; <b>193</b>: 114281.</p><p>Eanes AM, Smith AE. <b>Optimizing solar capacity for commercial-scale PV systems: An empirical cost–benefit framework for all stakeholders.</b> <i>Solar Energy</i> 2024; <b>269</b>: 112323.</p><p>Yuan L, Nain P, Kothari M, et al <b>Material intensity and carbon footprint of crystalline silicon module assembly over time.</b> <i>Solar Energy</i> 2024; <b>269</b>: 112336.</p><p>Mao D, Yang S, Ma L, et al <b>Overview of life cycle assessment of recycling end-of-life photovoltaic panels: A case study of crystalline silicon photovoltaic panels.</b> <i>Journal of Cleaner Production</i> 2024; <b>434</b>: 140320.</p><p>Chhillar I, Sandhu S, Majewski P, et al <b>Product stewardship for solar photovoltaic panels.</b> <i>Progress in Energy</i> 2024; <b>6</b>(1): 012003.</p>","PeriodicalId":223,"journal":{"name":"Progress in Photovoltaics","volume":"32 4","pages":"276-279"},"PeriodicalIF":8.0000,"publicationDate":"2024-03-11","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"https://onlinelibrary.wiley.com/doi/epdf/10.1002/pip.3795","citationCount":"0","resultStr":"{\"title\":\"Photovoltaics literature survey (No. 190)\",\"authors\":\"Ziv Hameiri\",\"doi\":\"10.1002/pip.3795\",\"DOIUrl\":null,\"url\":null,\"abstract\":\"<p>Hu F, Mou S, Wei S, et al <b>Research on the evolution of China's photovoltaic technology innovation network from the perspective of patents.</b> <i>Energy Strategy Reviews</i> 2024; <b>51</b>: 101309.</p><p>De Keersmaecker M, Tirado J, Armstrong NR, et al <b>Defect quantification in metal halide perovskites anticipates photoluminescence and photovoltaic performance.</b> <i>Acs Energy Letters</i> 2024; <b>9</b>(1): 243–252.</p><p>Wang S, Wang C, Ge Y, et al <b>In-depth analysis of photovoltaic module parameter estimation.</b> <i>Energy</i> 2024; <b>291</b>: 130345.</p><p>Cao Y, Pang D, Zhao Q, et al <b>Improved YOLOv8-GD deep learning model for defect detection in electroluminescence images of solar photovoltaic modules.</b> <i>Engineering Applications of Artificial Intelligence</i> 2024; <b>131</b>: 107866.</p><p>Musiienko A, Yang FJ, Gries TW, et al <b>Resolving electron and hole transport properties in semiconductor materials by constant light-induced magneto transport.</b> <i>Nature Communications</i> 2024; <b>15</b>(1): 316.</p><p>Qin Y, Yonemoto A, Gotoh K, et al <b>Potential-induced degradation phenomena in single-encapsulation crystalline Si photovoltaic modules.</b> <i>Japanese Journal of Applied Physics</i> 2024; <b>63</b>(2): 02SP11.</p><p>Chen W, Liu W, Yu Y, et al <b>Study on selective emitter fabrication through an innovative pre-diffusion process for enhanced efficiency in TOPCon solar cells.</b> <i>Progress in Photovoltaics: Research and Applications</i> 2024; <b>32</b>(3): 199–211.</p><p>Chen S, Shi J, Yao Y, et al <b>Enhancement of short-circuit current density in silicon heterojunction solar cells by hydrogenated multiple-doped In</b><sub><b>2</b></sub><b>O</b><sub><b>3</b></sub> <b>thin films.</b> <i>Solar Energy Materials and Solar Cells</i> 2024; <b>267</b>: 112727.</p><p>Hossain MJ, Sun M, Davis KO. <b>Photon management in silicon photovoltaic cells: A critical review.</b> <i>Solar Energy Materials and Solar Cells</i> 2024; <b>267</b>: 112715.</p><p>Li Y, Shi B, Xu Q, et al <b>CsCl induced efficient fully-textured perovskite/crystalline silicon tandem solar cell.</b> <i>Nano Energy</i> 2024; <b>122</b>: 109285.</p><p>Ravidas BK, Das A, Agnihotri SK, et al <b>Design principles of crystalline silicon/CsGeI</b><sub><b>3</b></sub> <b>perovskite tandem solar cells using a combination of density functional theory and SCAPS-1D frameworks.</b> <i>Solar Energy Materials and Solar Cells</i> 2024; <b>267</b>: 112688.</p><p>Du B, Ma MY, Zhang PP, et al <b>High-performance all-small-molecule organic solar cells fabricated via halogen-free preparation process.</b> <i>Acs Applied Materials and Interfaces</i> 2024; <b>16</b>(2): 2564–2,572.</p><p>Fan B, Gao H, Jen AK. <b>Biaxially conjugated materials for organic solar cells.</b> <i>Acs Nano</i> 2024; <b>18</b>(1): 136–154.</p><p>Kim JH, Park B, Song S, et al <b>Stretchable and transparent nanopillar arrays for high-performance ultra-flexible organic photovoltaics.</b> <i>Applied Physics Letters</i> 2024; <b>124</b>(2): 023301.</p><p>Zhang L, Guo X, Deng W, et al <b>Regulating pre-aggregation in non-halogenated solvent to enhance the efficiency of organic solar cells.</b> <i>Applied Physics Letters</i> 2024; <b>124</b>(1): 013902.</p><p>Lee MJ, Park JS, Kim TH, et al <b>Tailoring hole-selective contacts via self-assembled monolayers for advancing indoor organic photovoltaic and capacitor devices.</b> <i>Chemical Engineering Journal</i> 2024; <b>481</b>: 148481.</p><p>Kang X, Bi FZ, Ding XQ, et al <b>Structure–activity relationship between crystallinity and carrier transport of two-dimensional donor units in organic solar cells.</b> <i>Journal of Physical Chemistry Letters</i> 2024; <b>15</b>(2): 514–524.</p><p>Tran DK, West SM, Guo JJ, et al <b>Chain length dependence of electron transport in an n-type conjugated polymer with a rigid-rod chain topology.</b> <i>Journal of the American Chemical Society</i> 2024; <b>146</b>(2): 1435–1,446.</p><p>Xia J, Jin J, Zheng D, et al <b>NiSe</b><sub><b>2</b></sub><b>-CoSe</b><sub><b>2</b></sub> <b>hollow polyhedron as counter electrode catalyst for high-efficiency dye-sensitized solar cells.</b> <i>Applied Surface Science</i> 2024; <b>651</b>: 159176.</p><p>Kamesh S, Athithya S, Harish S, et al <b>Nitrogen-doped reduced graphene oxide enfolded zinc cobaltite micro flowers as efficient triiodide reduction for a platinum-free counter electrode in dye-sensitized solar cell applications.</b> <i>Electrochimica Acta</i> 2024; <b>475</b>: 143262.</p><p>Elnemr AM, Ghander AM, El-Sayed IA, et al <b>The effect of different concentrations of molybdenum trioxide in electrolyte for dye-sensitized solar cells (DSSCs): Performance enhancement of DSSCs.</b> <i>IEEE Journal of Photovoltaics</i> 2024; <b>14</b>(1): 99–106.</p><p>Asghar H, Riaz T, Mannan HA, et al <b>Rheology and modeling insights into dye-sensitized solar cells (DSSCs) material: Bridging the gap to solar energy advancements.</b> <i>Renewable and Sustainable Energy Reviews</i> 2024; <b>193</b>: 114298.</p><p>Roy P, Vats AK, Tang L, et al <b>Controlling adsorption of two dyes on TiO</b><sub><b>2</b></sub> <b>surface to improve the efficiency of see-through dye-sensitized solar cells.</b> <i>Solar Energy</i> 2024; <b>269</b>: 112339.</p><p>Chen B, Yu R, Xing G, et al <b>Dielectric engineering of 2D organic–inorganic hybrid perovskites.</b> <i>Acs Energy Letters</i> 2024; <b>9</b>(1): 226–242.</p><p>Guo XM, Lu CY, Zhang WX, et al <b>In situ surface sulfidation of CsPbI</b><sub><b>3</b></sub> <b>for inverted perovskite solar cells.</b> <i>Acs Energy Letters</i> 2024; <b>9</b>(1): 329–335.</p><p>Jiang J, You J, Liu SF, et al <b>Scale-up solutions of 2D perovskite photovoltaics: Insights of multiscale structures.</b> <i>Acs Energy Letters</i> 2024; 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引用次数: 0

摘要

阳离子在二维/三维界面上的迁移如何决定包晶太阳能电池的效率Acs Energy Letters 2024; 9(1):Hu P, Zhou W, Chen J, et al Multidentate anchoring strategy for synergistically modulating crystallization and stability towards efficient perovskite solar cells.Liu H, Liu T, Ma X, et al Regulation on electron density distribution of organic molecule passivator enables efficient and stable perovskite solar cells.Tian K, Chen M, Liu H, et al Interfacial bidirectional binding for improving photovoltaic performance of perovskite solar cells.Aranda CA, Alvarez AO, Chivrony VS, et al Overcoming ionic migration in perovskite solar cells through alkali metals.Joule 2024; 8(1):Gao ZW, Wang Y, Chen X, et al Reconstructing subsurface lattice for stable perovskite photovoltaics.Joule 2024; 8(1):255-266.Huan ZH, Zheng YF, Wang KP, et al.材料化学学报 A 2024; 12(4):1910-1922.Chen N, Li QS.天然烯番茄红素对高效稳定的包晶体太阳能电池的胶状钝化:理论视角的启示。材料化学学报 C 2024; 12(4):Song ZL, Gao YP, Zou Y, et al Single-crystal-assisted In situ phase reconstruction enables efficient and stable 2D/3D perovskite solar cells.美国化学会志》,2024 年,146(2):Liu F, Ma Y, Zhang Y, et al Oxyl-terminated melem nanoparticles as crystallization modulators and passivating anchors for high-performance perovskite solar cells.Zeng LR, Ding B, Zhang G, et al Elimination of buried interfacial voids for efficient perovskite solar cells.Dong X, Wang R, Gao Y, et al Orbital interactions in 2D Dion-Jacobson perovskites using oligothiophene-based semiconductor spacers enable efficient solar cells.Nano Letters 2024; 24(1):Said AA, Aydin E, Ugur E, et al Sublimed C60 for efficient and repeatable perovskite-based solar cells.自然通讯 2024; 15(1):708.Elanzeery H, Stolzel M, Eraerds P, et al 超越 20% 世界纪录的薄膜太阳能模块效率。IEEE 光伏学报 2024; 14(1): 107-115:Chander S, Tripathi SK, Kaur I, et al Nontoxic and earth-abundant Cu2ZnSnS4 (CZTS) thin film solar cells:高通量加工方法综述。Chauhan P, Agarwal S, Srivastava V, et al Impact on Generation and recombination rate in Cu2ZnSnS4 (CZTS) solar cell for Ag2S and In2Se3 buffer layers with CuSbS2 back surface field layer.光伏技术进展:2024;32(3):Debono A, L'Hostis H, Rebai A, et al 钼背接触和 CIGS 吸收体在太阳能电池降解过程中的协同效应。光伏技术进展:Photovoltaics: Research and Applications 2024; 32(3):Gensowski K, Freund T, Much M, et al 不同太阳能电池应用中透明导电氧化物层低电阻率触点的固化条件。光伏技术进展:研究与应用》,2024 年,第 32(2)期,第 102-114 页:Agrawal S, De Souza DO, Balasubramanian C, et al 由前驱体成分控制的次生相对 CZTS 薄膜太阳能电池效率的影响。Liu X, Abbas A, Togay M, et al The effect of remnant CdSe layers on the performance of CdSeTe/CdTe photovoltaic devices.Hao MM, Ding SS, Gaznaghi S, et al Perovskite 量子点太阳能电池:现状与未来展望。Acs Energy Letters 2024; 9(1):Maleki J, Eskandari M, Fathi D. 半串联量子点太阳能电池的新设计和优化:使用面向核壳的纳米结构,功率转换效率超过 30%。Renewable Energy 2024; 222: 119938.Ahn H. A framework for developing data-driven correction factors for solar PV systems.能源 2024; 290: 130096.Xu L, Ding P, Zhang Y, et al 太阳能光伏板不同位置障碍物遮挡效应的敏感性分析。Ahluwalia D, Anjum S, Mukherjee V. 线损综合分析及部分遮挡下优化光伏阵列的节能评估。Energy Conversion and Management 2024; 301: 118034.Amiri AF, Oudira H, Chouder A, et al Faults detection and diagnosis of PV systems based on machine learning approach using random forest classifier.Energy Conversion and Management 2024; 301: 118076.Yang H, Ding K, Chen X, et al 基于I-V曲线转换的光伏阵列快速仿真建模和多PS故障诊断。能源转换与管理 2024; 300: 117965.
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Photovoltaics literature survey (No. 190)

Hu F, Mou S, Wei S, et al Research on the evolution of China's photovoltaic technology innovation network from the perspective of patents. Energy Strategy Reviews 2024; 51: 101309.

De Keersmaecker M, Tirado J, Armstrong NR, et al Defect quantification in metal halide perovskites anticipates photoluminescence and photovoltaic performance. Acs Energy Letters 2024; 9(1): 243–252.

Wang S, Wang C, Ge Y, et al In-depth analysis of photovoltaic module parameter estimation. Energy 2024; 291: 130345.

Cao Y, Pang D, Zhao Q, et al Improved YOLOv8-GD deep learning model for defect detection in electroluminescence images of solar photovoltaic modules. Engineering Applications of Artificial Intelligence 2024; 131: 107866.

Musiienko A, Yang FJ, Gries TW, et al Resolving electron and hole transport properties in semiconductor materials by constant light-induced magneto transport. Nature Communications 2024; 15(1): 316.

Qin Y, Yonemoto A, Gotoh K, et al Potential-induced degradation phenomena in single-encapsulation crystalline Si photovoltaic modules. Japanese Journal of Applied Physics 2024; 63(2): 02SP11.

Chen W, Liu W, Yu Y, et al Study on selective emitter fabrication through an innovative pre-diffusion process for enhanced efficiency in TOPCon solar cells. Progress in Photovoltaics: Research and Applications 2024; 32(3): 199–211.

Chen S, Shi J, Yao Y, et al Enhancement of short-circuit current density in silicon heterojunction solar cells by hydrogenated multiple-doped In2O3 thin films. Solar Energy Materials and Solar Cells 2024; 267: 112727.

Hossain MJ, Sun M, Davis KO. Photon management in silicon photovoltaic cells: A critical review. Solar Energy Materials and Solar Cells 2024; 267: 112715.

Li Y, Shi B, Xu Q, et al CsCl induced efficient fully-textured perovskite/crystalline silicon tandem solar cell. Nano Energy 2024; 122: 109285.

Ravidas BK, Das A, Agnihotri SK, et al Design principles of crystalline silicon/CsGeI3 perovskite tandem solar cells using a combination of density functional theory and SCAPS-1D frameworks. Solar Energy Materials and Solar Cells 2024; 267: 112688.

Du B, Ma MY, Zhang PP, et al High-performance all-small-molecule organic solar cells fabricated via halogen-free preparation process. Acs Applied Materials and Interfaces 2024; 16(2): 2564–2,572.

Fan B, Gao H, Jen AK. Biaxially conjugated materials for organic solar cells. Acs Nano 2024; 18(1): 136–154.

Kim JH, Park B, Song S, et al Stretchable and transparent nanopillar arrays for high-performance ultra-flexible organic photovoltaics. Applied Physics Letters 2024; 124(2): 023301.

Zhang L, Guo X, Deng W, et al Regulating pre-aggregation in non-halogenated solvent to enhance the efficiency of organic solar cells. Applied Physics Letters 2024; 124(1): 013902.

Lee MJ, Park JS, Kim TH, et al Tailoring hole-selective contacts via self-assembled monolayers for advancing indoor organic photovoltaic and capacitor devices. Chemical Engineering Journal 2024; 481: 148481.

Kang X, Bi FZ, Ding XQ, et al Structure–activity relationship between crystallinity and carrier transport of two-dimensional donor units in organic solar cells. Journal of Physical Chemistry Letters 2024; 15(2): 514–524.

Tran DK, West SM, Guo JJ, et al Chain length dependence of electron transport in an n-type conjugated polymer with a rigid-rod chain topology. Journal of the American Chemical Society 2024; 146(2): 1435–1,446.

Xia J, Jin J, Zheng D, et al NiSe2-CoSe2 hollow polyhedron as counter electrode catalyst for high-efficiency dye-sensitized solar cells. Applied Surface Science 2024; 651: 159176.

Kamesh S, Athithya S, Harish S, et al Nitrogen-doped reduced graphene oxide enfolded zinc cobaltite micro flowers as efficient triiodide reduction for a platinum-free counter electrode in dye-sensitized solar cell applications. Electrochimica Acta 2024; 475: 143262.

Elnemr AM, Ghander AM, El-Sayed IA, et al The effect of different concentrations of molybdenum trioxide in electrolyte for dye-sensitized solar cells (DSSCs): Performance enhancement of DSSCs. IEEE Journal of Photovoltaics 2024; 14(1): 99–106.

Asghar H, Riaz T, Mannan HA, et al Rheology and modeling insights into dye-sensitized solar cells (DSSCs) material: Bridging the gap to solar energy advancements. Renewable and Sustainable Energy Reviews 2024; 193: 114298.

Roy P, Vats AK, Tang L, et al Controlling adsorption of two dyes on TiO2 surface to improve the efficiency of see-through dye-sensitized solar cells. Solar Energy 2024; 269: 112339.

Chen B, Yu R, Xing G, et al Dielectric engineering of 2D organic–inorganic hybrid perovskites. Acs Energy Letters 2024; 9(1): 226–242.

Guo XM, Lu CY, Zhang WX, et al In situ surface sulfidation of CsPbI3 for inverted perovskite solar cells. Acs Energy Letters 2024; 9(1): 329–335.

Jiang J, You J, Liu SF, et al Scale-up solutions of 2D perovskite photovoltaics: Insights of multiscale structures. Acs Energy Letters 2024; 9(1): 17–29.

Szabó G, Kamat PV. How cation migration across a 2D/3D interface dictates perovskite solar cell efficiency. Acs Energy Letters 2024; 9(1): 193–200.

Hu P, Zhou W, Chen J, et al Multidentate anchoring strategy for synergistically modulating crystallization and stability towards efficient perovskite solar cells. Chemical Engineering Journal 2024; 480: 148249.

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来源期刊
Progress in Photovoltaics
Progress in Photovoltaics 工程技术-能源与燃料
CiteScore
18.10
自引率
7.50%
发文量
130
审稿时长
5.4 months
期刊介绍: Progress in Photovoltaics offers a prestigious forum for reporting advances in this rapidly developing technology, aiming to reach all interested professionals, researchers and energy policy-makers. The key criterion is that all papers submitted should report substantial “progress” in photovoltaics. Papers are encouraged that report substantial “progress” such as gains in independently certified solar cell efficiency, eligible for a new entry in the journal''s widely referenced Solar Cell Efficiency Tables. Examples of papers that will not be considered for publication are those that report development in materials without relation to data on cell performance, routine analysis, characterisation or modelling of cells or processing sequences, routine reports of system performance, improvements in electronic hardware design, or country programs, although invited papers may occasionally be solicited in these areas to capture accumulated “progress”.
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