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Engineering, Peking University, 2022 【 4】 Xin Fang,?,? LiWu Fan,*,?,? Qing Ding,?,? Xiao Wang,?,? XiaoLi Yao,?,? JianFeng Hou,? ZiTao Yu,?,167。GuanHua Cheng,∥ YaCai Hu,? and KeFa Cen167。 Increased Thermal Conductivity of EicosaneBased Composite PhaseChange Materials in the Presence of Graphene Nanoplatelets Zhejiang 2022 【 5】田勝力 , 張東 , 肖德炎 .硬脂酸丁酯 /多孔石墨定形相變材料的 實驗研究 [J].節(jié)能 ,2022,11:5— 6. 【 6】周建偉 , 程玉良 , 王儲備 等 .硬脂酸 /氧化石墨烯復(fù)合相變儲熱材料研究 [J].化工新型材料 ,2022,41(6):47— 49. 【 7】黃富強 仲亞娟 陳劍 萬冬云 畢輝 三維石墨烯 /相變儲能復(fù)合材料及其制備方法 上海市長寧區(qū)定西路 1295號 中國科學(xué)院上海硅酸鹽研究所 2022 【 8】 Pradyumna Goli, Stanislav Legedza, Aditya Dhar, RubenSalgado, Jacqueline Renteria and Alexander A. Balandin??GrapheneEnhanced Hybrid PhaseChange Materials for ThermalManagement of LiIon Batteries USA NanoDevice Laboratory, Department of Electrical Engineering and Materials Scienceand Engineering Program, Bourns College of Engineering, University of California 2022 【 9】 Sumin Kim a,195。, Lawrence T. Drzal b Solar Energy Materials amp。 Solar Cells USA Department of Architecture, College of Engineering, Soongsil University, Seoul 156743, Republic of Korea Composite Materials and Structures Center, College of Engineering, Michigan State University, East Lansing, 2022 【 10】 Fazel Yavari, Hafez Raeisi Fard, Kamyar Pashayi,etc. Enhanced Thermal Conductivity in a Nanostructured Phase Change Composite due to Low Concentration Graphene Additives[J]. J. Phys. Chem. C 2022, 115, 8753–8758. 【 11】 JiaNan Shi , MingDer Ger , YihMing Liu . Improving the thermal conductivity and shapestabilization of phase change materials using nanographite additives[J].CARBON,51(2022) : 365— 372. 【 12】 Mohammad Mehrali, Sara Tahan Latibari, Mehdi Mehrali. Shapestabilized phase change materials with high thermal conductivity based on paraffin/graphene oxide posite[J].Energy Conversion and Management,67(2022) : 275— 282.