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π-Extension and chlorination of non-fullerene acceptors enable more readily processable and sustainable high-performance organic solar cells
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作者 Ning Su Jianhua Chen +6 位作者 Mengran Peng Guoping Li Robert M.Pankow Ding Zheng Junqiao Ding antonio facchetti Tobin J.Marks 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2023年第4期321-329,共9页
Organic solar cells(OSCs)processed without halogenated solvents and complex treatments are essential for future commercialization.Herein,we report three novel small molecule acceptors(NFAs)consisting of a Y6-like core... Organic solar cells(OSCs)processed without halogenated solvents and complex treatments are essential for future commercialization.Herein,we report three novel small molecule acceptors(NFAs)consisting of a Y6-like core but withπ-extended naphthalene with progressively more chlorinated end-capping groups and a longer branched chain on the Nitrogen atom.These NFAs exhibit good solubilities in nonchlorinated organic solvents,broad optical absorptions,closeπ-πstacking distances(3.63–3.84A),and high electron mobilities(~10^(-3)cm^(2)V^(-1)s^(-1)).The o-xylene processed and as-cast binary devices using PM6 as the donor polymer exhibit a PCE increasing upon progressive chlorination of the naphthalene end-capping group from 8.93%for YN to 14.38%for YN-Cl to 15.00%for YN-2Cl.Furthermore similarly processed ternary OSCs were fabricated by employing YN-Cl and YN-2Cl as the third component of PM6:CH1007 blends(PCE=15.75%).Compared to all binary devices,the ternary PM6:CH1007:YN-Cl(1:1:0.2)and PM6:CH1007:YN-2Cl(1:1:0.2)cells exhibit significantly improved PCEs of 16.49%and15.88%,respectively,which are among the highest values reported to date for non-halogenated solvent processed OSCs without using any additives and blend post-deposition treatments. 展开更多
关键词 Non-fullerene acceptors Non-chlorinated organic solvents Organic solar cells
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Waveguide electro-optic modulators based on self-assembled material systems 被引量:1
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作者 LIU Zhi-fu MA Jing +6 位作者 SUN De-gui XU Guo-yang HO Seng-Tiong ZHU Pei wang KANG Hu antonio facchetti Tobin J. Marks 《光学精密工程》 EI CAS CSCD 北大核心 2005年第5期554-560,共7页
Fabrication and characterization of electro-optic modulators based on the novel organic electro-optic materials composed of self-assembled superlattices (SAS) were presented, both wet-dipping self-assembly and vapor p... Fabrication and characterization of electro-optic modulators based on the novel organic electro-optic materials composed of self-assembled superlattices (SAS) were presented, both wet-dipping self-assembly and vapor phase deposition approaches were discussed. Prototype waveguide electro-optic modulators were fabricated using SAS films integrated with low-loss polymeric materials functioning as partial guiding and cladding layers.Promising electro-optic thin film materials including DTPT and PEPCOOH grown from the vapor phase were used for fabrication and test of electro-optic prototype modulators. Finally,the EO coefficient of tens of pm/V was obtained,which can sufficiently support high-speed and small size EO modulators. 展开更多
关键词 电子波导 光电子调节器 SAS 薄膜
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Cost-effective synthesis of giant molecule acceptors(GMAs)for stable polymer solar cells
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作者 antonio facchetti 《Science China Chemistry》 SCIE EI CAS CSCD 2024年第4期1041-1043,共3页
Polymer solar cells(PSCs)have emerged as a disruptive energy technology due to simple device architecture,earthabundant elemental composition,lightweight nature,and inherent mechanical flexibility[1,2].Via a strategic... Polymer solar cells(PSCs)have emerged as a disruptive energy technology due to simple device architecture,earthabundant elemental composition,lightweight nature,and inherent mechanical flexibility[1,2].Via a strategic acceptordonor-acceptor(A-D-A)design of small-molecule acceptors(SMAs),device power conversion efficiency(PCE)has now increased>19%. 展开更多
关键词 ACCEPTOR synthesis DONOR
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Molecular conformation-induced interfacial stress at the origin of the instability of organic transistors
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作者 antonio facchetti 《Science China Chemistry》 SCIE EI CSCD 2021年第9期1437-1438,共2页
As one of the most important organic electronic building block,organic field-effect transistors(OFETs)have broad application prospects in the fields of flexible displays,electronic skins,and wearable devices.After mor... As one of the most important organic electronic building block,organic field-effect transistors(OFETs)have broad application prospects in the fields of flexible displays,electronic skins,and wearable devices.After more than 30 years of development,the performance(e.g.,the carrier mobility)and processing technology of OFETs have made considerable progress^([1,2]). 展开更多
关键词 TRANSISTORS INTERFACIAL ORIGIN
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