Area1. Advanced concepts and emerging materials for future PV power conversion | |||||
6-Nov-23 | |||||
User Code | Topic | Name | Unit | ||
poster | 1MoP.1 | 243 | Effect of DC magnetron sputtering power on the performance of thin-film transistors | ZhongPan | Sungkyunkwan University |
poster | 1MoP.2 | 516 | 11.50% of the Incident Light Intensity can be Obtained Under a 6×6 cm2 Occluded Area of the Photovoltaic Glass by Inserting a Uniform Bubbled Layer | Yingfeng Li | North China Electric Power University |
poster | 1MoP.3 | 565 | Improvement of TFT-NVM charge retention characteristics by H2O2 treatment | Wang Fucheng | Sungkyunkwan University |
poster | 1MoP.4 | 456 | A Study on the Mechanisms and Rules Governing the Energy Losses of Photovoltaic Modules Caused by Semi-transparent Obstructions | Yingfeng Li | North China Electric Power University |
poster | 1MoP.5 | 501 | Alkyl Chain Engineering of Bithiophene Imide-Based Polymer Donor for Organic Solar Cell | Yuanqing Bai | South China University of Technology |
poster | 1MoP.6 | 549 | Novel In-situ Self-doping Cathode Interlayer Materials with Thickness-insensitivity for High-efficiency Organic Solar Cells Through Polymer Planar Backbone Regulation Strategy | Haiyang Zhao | South China University of Technology |
poster | 1MoP.7 | 540 | Ferrite-Based Photoelectrodes for Direct Conversion of Solar Energy to Electrochemical Energy | Xin Sun | North China Electric Power University |
poster | 1MoP.8 | 668 | Hydrometallurgy Strategy for Lead Halide Perovskite Materials | Qiang Zeng | Central South University |
poster | 1MoP.9 | 599 | Ligand-engineered TiO2 Deposition for High Efficiency Planar Perovskite Solar Cells | Hao Huang | North China Electric Power University |
poster | 1MoP.10 | 599 | Defect Engineering for Efficient and Stable Perovskite Solar Cells | Hao Huang | North China Electric Power University |
poster | 1MoP.11 | 295 | Structure Optimization of PEDOT:PSS/Si Hybrid Solar Cells with SiNWs | Qi Geng | North China Electric Power University |
poster | 1MoP.12 | 572 | Photo-rechargeable Properties of NiAl-LDH/g-C3N4 Heterojunction Material | Xiao-Jun Lv | NCEPU |
Area2. Perovskite and tandem solar cells and modules | |||||
6-Nov-23 | |||||
User Code | Topic | Name | Unit | ||
poster | 2MoP.1 | 665 | Tailored strategies targeting the buried heterointerface in perovskite solar cells | Tong Xiao | Hong Kong Baptist University |
poster | 2MoP.2 | 706 | Crystallization Modulation of α-FAPbI3 Perovskite Solar Cells with High Efficiency and Long-Term Stability | Yiqiang Zhang | Zhengzhou University |
poster | 2MoP.3 | 682 | Unveiling Property of Hydrolysis-Derived DMAPbI3 and the Removal of Dimethylammonium for Efficient CsPbI3 Perovskite Solar Cells | Yang Liu | University of Electronic Science and Technology of China |
poster | 2MoP.4 | 662 | Tailoring the Grain Boundaries Grooves for High-Performance Perovskite Solar Cells | Mingwei Hao | Hong Kong Baptist University |
poster | 2MoP.5 | 664 | Tungstate-mediated In-situ Passivation of Grain Boundary Grooves in Perovskite Solar Cells | Rundong Fan | Peking University |
poster | 2MoP.6 | 663 | Anti-fatigue perovskite solar cells by interfacial Starch-polyiodide supermolecule buffer layer | Yu Zhang | Peking university |
poster | 2MoP.7 | 652 | Effect of Surface Morphology Change by Laser Scribing Process on Deposition of Perovskite Layer of Large-area Perovskite Solar Modules | Li Xu | National Taiwan University |
poster | 2MoP.8 | 595 | Thermal evaporation of CsPbBrCl2 thin films for photovoltaic power converters of optical wireless power transmission systems | Atsuto Watanabe | Tokyo Institute of Technology |
poster | 2MoP.9 | 499 | Effects of Vacuum-Deposited Niox Surface Treatments for Inverted Perovskite Solar Cells | saiqiang Wang | Shenzhen Institute of Advanced Technology, Chinese Academy of Sciences |
poster | 2MoP.10 | 414 | Understanding annealing and stability effects in AZO-Al2O3 nanolayers for Si-based tandem solar cells | Yan Wang | University of Oxford |
poster | 2MoP.11 | 552 | NanoLBIC Characterisation of Inhomogeneities in Perovskite Solar Cell Devices | Yifu Shi | University of Oxford |
poster | 2MoP.12 | 610 | Reducing voltage loss Alignment in Printable Mesoscopic Solar Cells through CsPbBr3 Quantum Dot Post-Processing | Jinwei Gong | Huazhong University of Science and Technology |
poster | 2MoP.13 | 331 | Textured Anti-reflection films for Monolithic Perovskite/Silicon Tandem Solar Cells | Fuhua Hou | Inner Mongolia University |
poster | 2MoP.14 | 611 | Research on current collection through-holes for film-type perovskite solar cells | Ryousuke Ishikawa | Tokyo City University |
poster | 2MoP.15 | 325 | Effective Passivation with Self-Organized Molecules for Perovskite Photovoltaics | Xinhui Luo | Shanghai jiao tong university, China |
poster | 2MoP.16 | 74 | Device simulation on CsPbBr3 optical power converter using a-ZSO between TCO and Electron transport layer | Yuejie Tan | Tokyo Institute of Technology |
poster | 2MoP.17 | 423 | Interfacial Engineering of Wide Bandgap Perovskite for High Efficiency Perovskite/Cu(InGa)Se2 Tandem Solar Cells | Xia Chen | Shenzhen Institutes of Advanced Technology, Chinese Academy of Sciences |
poster | 2MoP.18 | 591 | The construction of efficient and stable heterostructures in inverted perovskite solar cells | Ziyang Zhang | Shanghai jiao tong university |
poster | 2MoP.19 | 161 | Improved Electrical Properties of AZO Thin Films Based on Atomic Layer Deposition of Modified Silver Nanowires | Jinxing He | Shenzhen technology university |
poster | 2MoP.20 | 487 | Demonstration of Top Contact-Less Perovskite/Silicon 2-Terminal Tandem Solar Cells for Minimizng Parasitic Absorption | Dowon Pyun | Korea University |
poster | 2MoP.21 | 588 | Highly-Efficient Non-Toxic Perovskite Solar Cells by Slot-die Coating | Chia-Feng Li | National Taiwan University |
poster | 2MoP.22 | 413 | A High-Efficiency and Photostable Wide Bandgap Perovskite Solar Cells Fabricated via Composition Engineering | Sheng-wen Huang | Ming-Chi University of Technology |
poster | 2MoP.23 | 585 | Research on the Performance Improvement of Perovskite Solar Cells Based on the A-site Cation Incorporation.doc | Aoxi He | Sichuan University |
poster | 2MoP.24 | 127 | Additive engineering for stable Sn-based perovskite solar cells | Md. Emrul Kayesh | National Institute of Materials Science |
poster | 2MoP.25 | 452 | Controlling the intermediate phase to improve the crystallinity and orientation of Cs3Sb2ClxI9-x films for efficient solar cells | Yafei Zhang | Hebei University of Technology |
poster | 2MoP.26 | 445 | Interfacial Engineering of Wide-Bandgap Perovskite for Efficient Perovskite/CdTe Tandem Solar cells | Ya Jie Yang | Sichuan University |
poster | 2MoP.27 | 573 | Volatile Additive for High-Performance and Anti-Solvent Free Perovskite Solar Cells | Du Yifan | Southern University of Science and Technology |
poster | 2MoP.28 | 146 | Influence of rotational speed and glass bead amount during etching by MPAT on Si texture size | Pengyu Yang | Japan Advanced Institute of Science and Technology |
poster | 2MoP.29 | 483 | Micellization of Surface-Active Ionic Liquids for Monolithic Perovskite/Silicon Tandem Solar Cells with Suppressed Strain Corrosion | Xinlong Wang | Ningbo Institute of Materials Technology and Engineering |
poster | 2MoP.30 | 230 | Application of Low-Temperature Deposited W-doped In2O3 Transparent Electrodes for p-i-n and n-i-p Structured Perovskite Solar Cells | Jingyu Chu | Shanghai Normal University |
poster | 2MoP.31 | 398 | Inhibition of defect-induced α-to-δ phase transition for efficient and stable formamidinium perovskite solar cells | Tian Chen | Shenzhen Campus of Sun Yat-sen University |
poster | 2MoP.32 | 355 | Multiple Function Synchronous Optimization by PbS Quantum Dots for Highly Stable Planar Perovskite Solar Cells with Efficiency Exceeding 23% | Li He | Shanghai Jiao Tong University |
poster | 2MoP.33 | 543 | Ceiling of Barium Substitution for B-site Cation in Organometal Halide Perovskite Solar Cells | Ying-Han Liao | Chang Gung Univeristy |
poster | 2MoP.34 | 459 | High-Performance Perovskite Solar Cells based on Various Metal-Doped TiO2 Electron Transport Layer | Ming-Chung Wu | Chang Gung University |
poster | 2MoP.35 | 528 | Predictions of the bandgap and formation energy for highly stable inorganic lead-free halide perovskite solar cell by Machine learning | Qixin Zhang | Yunnan Normal University |
poster | 2MoP.36 | 467 | Chelated PbI4 pseudo-octahedron surface for efficient and stable perovskite solar cells | Bin Wen | Shenzhen Campus of Sun Yat-sen University |
poster | 2MoP.37 | 526 | Bifunctional conjugated organic molecule in printable mesoscopic perovskite solar cells | Chuang Yang | Huazhong University of Science & Technology |
poster | 2MoP.38 | 527 | Aiming at the industrialization of Perovskite Solar Cells: coping with stability challenge | Zexiong Qiu | Huazhong University of Science and Technology |
poster | 2MoP.39 | 520 | Manipulating the Formation of 2D/3D Heterostructure in Stable High-Performance Printable CsPbI3 Perovskite Solar Cells | Yachao Du | Shaanxi Normal University |
poster | 2MoP.40 | 228 | Direct growth of high quality and thickness controlled large area (over 2500 mm2) perovskite single crystal on a substrate for X-ray detector application. | Youngseung, Choi | korea advanced institute of science and technology |
poster | 2MoP.41 | 505 | TiO2/SnO2 Electron Transport Bilayer for Large-Area Low-Temperature Fabrication of Perovskite Solar Cell | Xianhuan Yu | Nara Institute of Science and Technology (NAIST) |
poster | 2MoP.42 | 468 | Wide-Bandgap Perovskite Solar Cell Using a Fluoride-Assisted Surface Gradient Passivation Strategy | Nan Yan | Shaanxi Normal University |
poster | 2MoP.43 | 433 | Interface Modification of Gd Doped SnO2 Electron Transport Layer for Efficient and Stable Perovskite Solar Cells | Renjie Wang | Fuzhou University |
poster | 2MoP.44 | 475 | Ambient-Air-Stable Ti2CTx MXene Passivation Inverted Perovskite Solar Cells | Peng Wu | Kunming University of Science and Technology |
poster | 2MoP.45 | 472 | Achieving small temperature coefficients in carbon-based perovskite solar cells by enhancing electron extraction | Xian Zhang | Hebei University of Technology |
poster | 2MoP.46 | 449 | Graded heterojunction improves wide-bandgap perovskite for highly efficient 4-terminal perovskite/silicon tandem solar cells | Wenming Chai | Xidian university |
poster | 2MoP.47 | 307 | Acetic Acid Based Solvent Enables Fabrication of Wide-Band-Gap (2.0 eV) Perovskite Solar Cells with a VOC of 1.325 V | Jian Cheng | Hanyang university |
poster | 2MoP.48 | 605 | On the Ion Coordination and Crystallization of Metal Halide Perovskites by In-situ Dynamic Optical Probing | Zixin Zeng | City University of Hong Kong |
poster | 2MoP.49 | 617 | ZnO/SnO2 Bilayer as Electron Transport Layer for FAPbI3 Perovskite Solar Cell | Xuli Ning | Inner Mongolia University |
poster | 2MoP.50 | 618 | Cesium halides facilitate perovskite film growth to explore device performance | Xiaoqi Ren | Inner Mongolia University |
poster | 2MoP.51 | 615 | Relevance between wide bandgap organic-inorganic hybrid perovskite solar cell performance and Pb management | Haikuo Guo | Inner Mongolia University |
poster | 2MoP.52 | 584 | Temperature Effect on the Crystallization of Formamidine-based Perovskite | Yunfan Wang | City university of Hong Kong |
poster | 2MoP.53 | 571 | 24.65% Efficient inverted perovskite solar cells based on interface passivation treatment of inorganic hole transport layer by mixed self-assembled monolayer | Wenbo Peng | Southern University of Science and Technology |
poster | 2MoP.54 | 558 | CsPbCl3-cluster-widened bandgap and inhibited phase segregation in a wide-bandgap perovskite and its application to NiOx-based perovskite/silicon tandem solar cells | Yuanyuan Ding | Shihezi University |
poster | 2MoP.55 | 550 | Enhanced flexibility and light utilization for high-efficiency all-air-processed carbon-based perovskite solar cells | Siqi Li | XINTE ENERGY CO., LTD |
poster | 2MoP.56 | 257 | Efficient and Stable Inverted All-Inorganic Perovskite Solar Cells Based on Hole Selective Monolayers | Siliang Cao | University of Tsukuba |
poster | 2MoP.57 | 529 | Visualizing Interfacial Energy Offset and Defects in Efficient 2D/3D Heterojunction Perovskite Solar Cells and Modules | Weichuang Yang | Chinese Academy of Sciences |
poster | 2MoP.58 | 202 | Enhancing Open-Circuit Voltage of Mixed Tin-Lead Perovskite Solar Cells with Metal Powder and Ethylenediamine Passivation | Sejin Kim | Korea Advanced Institute of Science and Technology |
poster | 2MoP.59 | 381 | Zr(Ac)4 stabilized SnO2 quantum dots as ETL for efficient and stable perovskite solar cells | Haipeng Jiang | Jilin Normal University |
poster | 2MoP.60 | 381 | A Design Strategy of Additive Molecule for Pscs: Anchoring Intrinsic Properties of Functional Groups | Fengyou Wang | Jilin Normal University |
poster | 2MoP.61 | 23 | Highly Stable N-I-P Structured Formamidinium Tin Triiodide Solar Cells Through The Stabilization Of Surface Sn2+ Cations | Manman Hu | Ulsan National Insititute of Science and Technology |
poster | 2MoP.62 | 909 | Tuning the chemistry of solution-less perovskite processes for PVK-silicon tandem cells | Gregory Wilson | CSIRO |
poster | 2MoP.63 | 897 | In situ polymerization of cross-linked perovskite–polymer composites for highly stable and efficient perovskite solar cells | He Guo | Sungkyunkwan University |
poster | 2MoP.64 | 419 | Development of high-performance long-term stable and low-cost perovskite solar cells | Jing Zhang | University of Surrey |
poster | 2MoP.65 | 628 | Ion-Charged Dielectric Doping of Graphene Transparent Conducting Electrodes in Perovskite/Silicon Tandem Cells | John O’Sullivan | University of Oxford |
poster | 2MoP.66 | 598 | High Accuracy Optical Ray-Tracing Models for Single-Junction Perovskite Solar Cells | Varsha DAHIYA | National University of Singapore c/o Solar Energy Research Institute of Singapore, Singapore |
poster | 2MoP.67 | 593 | Scalable Two-Terminal All-Perovskite Tandem Solar Modules With Advanced Laser-Patterned Interconnections | David Benedikt Ritzer | Karlsruhe Institute of Technology |
poster | 2MoP.68 | 267 | Surface Passivation of Wide-bandgap Perovskite Solar Cells Using Selective Reactivity-assisted Sacrificial Additive Coating | Koh Jaehyuk | Korea Advanced Institute of Science and Technology (KAIST) |
poster | 2MoP.69 | 113 | Multifunctional Interfacial Layers for Reproducible and Efficient p-i-n Perovskite Solar Cells Yihao Wang | Yihao Wang | UNSW SPREE |
poster | 2MoP.70 | 7 | Monolayer-modified PTAA facilitates the preparation of high-efficiency wide-bandgap perovskite solar cells and all-perovskite tandem cells with efficiencies exceeding 25% | Huan Bi | The University of Electro-Communications |
Area3. Thin film compound semiconductor solar cells | |||||
6-Nov-23 | |||||
User Code | Topic | Name | Unit | ||
poster | 3MoP.1 | 329 | Development of the CdSe:O layer prepared by sputtering process for CdTe-based solar cell | Xinlu Lin | Advanced Solar Power (Hangzhou) Inc. |
poster | 3MoP.2 | 299 | The effect of substrate temperature on cadmium telluride films in high temperature vapor deposition process | Wenxiong Zhao | Institute of Electrical Engineering, Chinese Academy of Sciences |
poster | 3MoP.3 | 163 | Organic Passivation of Deep Defects in Cu(In,Ga)Se2 Film | Xuan Chang | Hebei University |
poster | 3MoP.4 | 594 | High Efficiency Cu2CdSnS4 Solar Cells Fabricated by Optimized Sulfurization | Jinhong Lin | ShenZhen University |
poster | 3MoP.5 | 612 | Kesterite Solar Cells on Transparent Electrodes | Chunxu Xiang | Nanjing University of Posts & Telecommunications |
poster | 3MoP.6 | 608 | Engineering Germanium Nanolayer Stacking Position in Precursor of Flexible Kesterite-based Thin-Film Solar Cell | Hojun Choi | Chonnam National University |
poster | 3MoP.7 | 38 | PEC water-splitting photocathode and thin-film solar cells based on kesterite materials and their properties according to the bandgap energy | Suyoung Jang | Chonnam National University |
poster | 3MoP.8 | 606 | 12.3% efficient low VOC loss pure sulfide kesterite solar cells from DMSO solution via cadmium alloying | Xiangyu Pan | Nanjing University of Posts & Telecommunications |
poster | 3MoP.9 | 117 | Effect of DC Bias on MZO Window Layer for CdTe Solar cell | QiuchenWu | Institute of electrical engineering, Chinese academy of sciences |
poster | 3MoP.10 | 117 | The Flexible CdTe Solar cell Prepared by Guided Vapor Deposition | QiuchenWu | Institute of electrical engineering, Chinese academy of sciences |
poster | 3MoP.11 | 422 | Study on Bifacial CdTe Solar Cell with ZnTe:N/IWO Composite Transparent Back Electrode | Xin Zhang | Sichuan University |
poster | 3MoP.12 | 581 | UV Spectroscopic Characterization of ZnO1-xSx Buffer Layer for Cu(In,Ga)Se2 Solar Cell | Kwok Cheuk Kai Gary | University of Tsukuba |
poster | 3MoP.13 | 570 | Quinoxalineimide-based Y-type Acceptors Tuning Charge Behaviors Enable Highly Efficient Ternary Organic Photovoltaics | Jianpeng Xu | Southern University of Science and Technology |
poster | 3MoP.14 | 439 | Post-Treatment of TiO2 Film Enables High-Quality Sb2Se3 Film Deposition for Solar Cell Applications | Lei Huang | University of Science and Technology of China |
poster | 3MoP.15 | 356 | Thermal-Driven Point Defect Transformation in Antimony Selenosulfide Photovoltaic Materials | Junjie Yang | University of Science and Technology of China |
poster | 3MoP.16 | 503 | Spiro-conjugation in Narrow-bandgap Nonfullerene Acceptors Enables Broader Spectral Response and Higher Detectivity for Near-infrared Organic Photodetectors | Lin Shao | South China University of Technology |
poster | 3MoP.17 | 409 | Direct Hydrothermal Deposition of Antimony Triselenide Films for Efficient Planar Heterojunction Solar Cells | Yue Hu | University of Science and Technology of China |
poster | 3MoP.18 | 374 | The influence of deposition conditions on the properties of the ZnTe:Cu back contact layer | Ruchun Li | Institute of Electrical Engineering, Chinese Academy of Sciences |
poster | 3MoP.20 | 408 | Interfacial Engineering Towards Enhanced Photovoltaic Performance of Sb2Se3 Solar Cell | Qi Zhao | University of Science and Technology of China |
poster | 3MoP.21 | 316 | A new copper complex for efficient chalcopyrite solar cells | Shuxia Wei | Nanjing University of Posts & Telecommunications |
poster | 3MoP.22 | 698 | Exploring Potential of Kesterite Based Cu2ZnSn(S,Se)4 Devices Under Indoor Light Conditions | KARADE VIJAY CHANDRAKANT | Korea Institute of Energy Technology |
poster | 3MoP.23 | 622 | Device Design for High-Efficient Cu(In,Ga)Se2 Solar Cells utilizing Bayesian Optimization | Takahito Nishimura | Tokyo Institute of Technology |
poster | 3MoP.24 | 184 | Research on the growth and defect regulation mechanism of Sb2Se3 film for solar cells | Mingdong Chen | Shenzhen University |
poster | 3MoP.25 | 539 | Modification of the back interface via In-doping technique achieving efficient flexible CZTSSe solar cells | Quanzhen Sun | Fuzhou University |
Area5. Materials, cells and modules of crystalline Silicon PV | |||||
6-Nov-23 | |||||
User Code | Topic | Name | Unit | ||
poster | 5MoP.1 | 420 | Study on the influence of micro-alkali texturing and micro-alkali polishing process on the passivation and contact performance of n-TOPCon solar cells | Chunlin Guo | Institute of Microelectronics of the Chinese Academy of Sciences |
poster | 5MoP.2 | 75 | Evaluation of Perimeter Recombination in Lab-level Silicon Heterojunction Solar Cells by Quokka3 Simulator | Depeng Qiu | Jiangxi Academy of Sciences |
poster | 5MoP.3 | 357 | Back EVA recycling from c-Si photovoltaic module without damaging solar cell via laser irradiation followed by mechanical peeling | LixiaoTong | University of Chinese Academy of Sciences |
poster | 5MoP.4 | 169 | Beyond 25% efficient crystalline silicon heterojunction solar cells with hydrogenated amorphous silicon oxide stacked passivation layers for rear emitter | Lilian Wen | Institute of Electrical Engineering, The Chinese Academy of Sciences |
poster | 5MoP.5 | 101 | Surface corrosion and deterioration mechanism of In2O3-based transparent conductive film under acetic acid stress | Yu Bai | Southwest Petroleum University |
poster | 5MoP.6 | 305 | Anti-reflection and down-conversion composite functional films for high-efficiency solar cells | Shengxuan Wang | Zhejiang University |
poster | 5MoP.7 | 134 | Fabrication and characterization of optical interference coatings for colored building-integrated photovoltaic applications | Chang Chuan You | Institute for Energy Technology |
poster | 5MoP.8 | 301 | AFORS-HET numerical simulation of high efficiency heterojunction solar cells with 28.26% efficiency | Bingquan Liang | Nankai University |
poster | 5MoP.9 | 111 | Study on the Effect of Temperature on Performance of Al2O3 Film Prepared by PEALD | Hongfang Wang | Yingli Energy Development Co., Ltd |
poster | 5MoP.10 | 284 | Penetrative Twining in 288 mm-diameter Photovoltaic Czochralski Silicon | Xiang Lv | Zhejiang University |
poster | 5MoP.11 | 171 | Superhydrophilicity Hollow Silica and Titania Nanospheres Composite Coating for Photovoltaic Modules | Sijia Jin | Zhejiang University |
poster | 5MoP.13 | 259 | High Mobility Hafnium and Hydrogen Co-Doped Indium Oxide Transparent Conductive Films and Application in High Efficiency Silicon Heterojunction Solar Cells | Jiacheng Shang | University of Chinese Academy of Sciences |
poster | 5MoP.14 | 181 | Study on effect of electric injection regeneration on LID in B-doped PERC cells by combing JAYA algorithm with SDM model | Chen Yang | Sun Yat-sen University |
poster | 5MoP.15 | 142 | Sn-doped indium oxide film prepared by reactive plasma deposition for high-efficiency silicon heterojunction solar cell | Yuqin Zhou | University of Chinese Academy of Sciences |
poster | 5MoP.16 | 142 | Large-area MoOx/c-Si heterojunction solar cells with a back junction | Yuqin Zhou | University of Chinese Academy of Sciences |
poster | 5MoP.17 | 211 | Aluminum and Molybdenum co-doped Zinc Oxide Films as Transparent Conductive Oxide for Silicon Solar Cells | Zhiyuan Xu | Nankai University |
poster | 5MoP.18 | 210 | Silver-Lean Screen-Printed Contacts for Industrial Silicon Solar Cells | Yuchao Zhang | University of New South Wales |
poster | 5MoP.19 | 185 | Impact of Defect Cluster Distribution on Solar Cell Performance in Cast Monocrystalline Silicon | Guixiu Li | Zhejiang University |
poster | 5MoP.20 | 191 | Bayesian optimization of carrier selectivity of p-type silicon nano-crystal/silicon oxide compound layer | Kazushi Mizutani | Nagoya University |
poster | 5MoP.21 | 174 | Improved Passivation of TOPCon Contacts by Thermal Annealing in A Water Vapor Atmosphere | Yu Yan | Nankai University |
poster | 5MoP.22 | 166 | Aluminum Fluoride Electron-Selective Passivating Contacts for Crystalline Silicon Solar Cells | Kun Gao | Soochow University |
poster | 5MoP.23 | 162 | Understanding the hydrogenation mechanisms based on water vapor atmosphere annealing in poly-Si/SiOx passivating contacts for Si solar cells by first-principles calculation | Jiakai Zhou | Nankai University |
poster | 5MoP.24 | 157 | Effects of Extended Defects on Crystalline Silicon Solar Cells and an Oxidation Processing To Restore Damaged Silicon Wafer | Jinpei Liu | Lanzhou University |
poster | 5MoP.25 | 138 | High-performance perovskite/silicon heterojunction solar cells enabled by industrially compatible postannealing | Sihua Zhong | Jiangsu Ocean University |
poster | 5MoP.26 | 133 | Performance enhancement of silicon heterojunction solar cell based on luminescent down-shifting | Daxue Du | Shanghai jiao tong university |
poster | 5MoP.27 | 133 | Effect of rear pyramid structures on industrial bifacial crystalline silicon solar cells | Daxue Du | Shanghai jiao tong university |
poster | 5MoP.28 | 269 | Analysis of the influence of bi-facial silicon solar cell module efficiency-enhancement mechanism | Zhao Xiaowen | East China University of Science and Technology |
poster | 5MoP.29 | 177 | Enhanced Surface Passivation of c-Si Surfaces Using Boron Oxide/Aluminum Oxide Stacks | Xinyu Wang | Soochow University |
poster | 5MoP.30 | 925 | How Particle Sizes Affect Silver Leaching From C-Si Photovoltaic Solar Cells | Shuang Song | University of New South Wales |
Area6. Performance and Reliability of PV modules | |||||
6-Nov-23 | |||||
User Code | Topic | Name | Unit | ||
poster | 6MoP.1 | 252 | Modeling of coated glass aging effects on module Isc loss | Ben Huang | Canadian Solar Inc. |
poster | 6MoP.2 | 440 | In-situ Microscopy Characterization of Light-induced Phase Segregation in Wide-Bandgap Perovskite Materials | Fangfang Cao | Ningbo Institute of Materials Technology and Engineering |
poster | 6MoP.3 | 154 | Degradation analysis of the photovoltaic modules after 40-year-operation | Xuemei Hu | Gansu Natural Energy Research Institute |
poster | 6MoP.4 | 306 | Day ahead Power Estimation of Residential PV using Random Forest and LSTM Neural Network | Sora Nasu | Tokyo University of Science |
poster | 6MoP.6 | 351 | The application of atomic layer deposition on polyimide substrate for space photovoltaic modules | Chi Yan | East China University of Science and Technology |
poster | 6MoP.7 | 497 | Effect of Cover Glass Morphology on the Potential-Induced Degradation of n-type Front-Emitter Crystalline Silicon Photovoltaic Modules | Keisuke Ohdaira | Japan Advanced Institute of Science and Technology |
poster | 6MoP.8 | 424 | Enhancing the Water Vapor Barrier of Polyethylene Terephthalate for Photovoltaic Modules Backsheets | Chengyou Zhang | East China University of Science and Technology |
poster | 6MoP.9 | 517 | Lifetime of PV Module in Tropical Climate using the Standard Testing Condition | Tanokkorn Chenvidhya | King Mongkut's University of Technology Thonburi |
poster | 6MoP.10 | 379 | Study on properties of thermal cycle aging backsheet materia | Yanyun Yang | Yunnan Normal University |
poster | 6MoP.11 | 404 | The Effect of Photovoltaic Ribbon Aging on the Electrical Performance of Photovoltaic Modules | Ping Feng | Yunnan Normal University |
poster | 6MoP.12 | 399 | Influence of partial shading conditions on space solar array's electrical performance | Ning Yang | Yangtze Institute for Solar Technology |
poster | 6MoP.13 | 337 | Expansion of Micro-cracks in Photovoltaic Modules under Outdoor Conditions | Li Feng | Bielefeld University of Applied Sciences and Arts |
poster | 6MoP.14 | 271 | Protective Layer for improving the lifetime reliability of Silver Electrodes for Solar Cell | Suwoon Lee | Seoul National University of Science and Technology |
poster | 6MoP.15 | 207 | The effects of Rear Reflection on the Efficiency Test of Bifacial Solar Cells | Chuangen Xu | East China University of Science and Technology |
poster | 6MoP.16 | 145 | Indoor Light Harvesting Wide-bandgap Perovskite Solar Modules Exceeding 43% Efficiency | Qiaoyan Ma | Ji'nan University |
poster | 6MoP.17 | 152 | Investigation of optoelectrical properties of encapsulation material of PV module | Ganghui Wei | Lanzhou University |
poster | 6MoP.18 | 619 | Outdoor Monitoring and Performance Analysis of Bifacial and Single-Sided PV Modules in Variable Climatic Conditions | Jung-Hwan Park | Pusan National University |
poster | 6MoP.19 | 32 | Comparative analysis of the power performance of the modules of TOPCon and HJT | Hui Li Han | XinYang Normal University |
poster | 6MoP.20 | 912 | Addressing Sodium Ion-Related Degradation in SHJ Cells by the Application of Nano-Scale Barrier Layers | Xinyuan Wu | UNSW |
Area8. Grid integration of PV system | |||||
6-Nov-23 | |||||
User Code | Topic | Name | Unit | ||
poster | 8MoP.1 | 522 | Research on the Application of Mixed Reality Technology in Power System Planning and Design | Jing Liu | Institute of Electrical Engineering, Chinese Academy of Sciences |
poster | 8MoP.2 | 370 | Hierarchical Approach for Comparing Direct Current Photovoltaic Power Plant Topology | Chen Huo | Institute of Electrical Engineering Chinese Academy of Sciences |
poster | 8MoP.3 | 482 | New Photovoltaic Pumped EnergyStorage System and Economic Analysis--Dongchuan Photovoltaic Pump Station as an Example | Yiqiang Zhang | Yunnan Normal University |
poster | 8MoP.4 | 507 | Critical System Strength Assessment of Photovoltaic Inverter Grid Integration | Fei Li | Hefei University of Technology |
poster | 8MoP.5 | 564 | Control Algorithm for MPPT Based on Multiple Module Input | Yu Zhou | Institute of Electrical Engineering,Chinese Academy of Siencse |
poster | 8MoP.6 | 416 | Fault Identification Method of Hot Spot Shape Feature Based on Random Forest | Lin Jiang | Hefei University of Technology |
poster | 8MoP.7 | 486 | Research on parameter design method of 90kW-LLC photovoltaic medium voltage DC converter | Gesi Tang | Institute of Electrical Engineering Chinese Academy of Sciences |
poster | 8MoP.8 | 425 | Design of Distributed Photovoltaic Electrolysis Hydrogen Production System | Yong Zhao | Institute of Electrical Engineering, Chinese Academy of Science |
poster | 8MoP.9 | 601 | Study on frequency conversion and high voltage transmission based on photovoltaic water pump system | Longfei Wu | Yunnan Normal University |
poster | 8MoP.10 | 548 | Voltage balance control of the DC/DC Converter in DC Series-parallel PV Collection System Based on Energy Storage System | Xinke Huang | Institute of Electrical Engineering, Chinese Academy of Sciences |
poster | 8MoP.11 | 429 | Evaluation Method of Renewable Energy Technologies Development Considering Multiple Time-scale Changes and Complementarity | Weiwei Chen | Institute of Electrical Engineering, Chinese Academy of Sciences |
poster | 8MoP.12 | 431 | Comprehensive Loss and Thermal Performance Analysis of Three-level T-type Grid-connected Converters | Liangliang Han | Hefei University of Technology |
poster | 8MoP.13 | 464 | Research on DC/DC converter for hydrogen production from photovoltaic | Xiangfei Meng | Institute of Electrical Engineering Chinese Academy of Sciences |
poster | 8MoP.14 | 426 | Insulation Design of Medium-Voltage and High-Frequency Transformer | Yubo Zhang | Institute of Electrical Engineering, Chinese Academy of Sciences |
Area9. PV business model, policy and standard | |||||
6-Nov-23 | |||||
User Code | Topic | Name | Unit | ||
poster | 9MoP.1 | 625 | Photovoltaic recycling enterprise standard research and recommendation report | Junyu Xu | PV Recycling Industry Development Center of PV Committee of China Green Supply Chain Alliance |
poster | 9MoP.2 | 369 | The Effect of Temperature and Irradiation on the performance ratio of photovoltaic Modules | Kai He | Photovoltaic and Wind Power Systems Quality Test Center, Institute of Electrical Engi-neering Chinese Academy of Sciences |
poster | 9MoP.3 | 454 | Energy Efficiency Calculation And Analysis of Photovoltaic Modules Under Climate Conditions | Kaixuan Zhou | Photovoltaic and Wind Power Systems Quality Test Center, Institute of Electrical Engineer-ing Chinese Academy of Sciences |
poster | 9MoP.4 | 335 | Overview of the Recent policy for PV Power Generation | Yinghua Dong | National Key Laboratory of Renewable Energy Grid-Integration |
China Renewable Energy Society
China Renewble Energy Society PV Committee
Address: 6 North Ertiao, Zhongguancun, Haidian District, Beijing
Phone: 010-82547025
E-mail: cres-pv@mail.iee.ac.cn
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