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3. J. W. Wang, X. F. Wu, J. Pan, T. L. Feng, D. Wu, X. J. Zhang, B. Yang, X. H. Zhang, J. S. Jie*, “Graphene-Quantum-Dots-Induced Centimeter-Sized Growth of Monolayer Organic Crystals for High-Performance Transistors”, Adv. Mater., 2020, 32(38), 2003315.
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5. S. Y. Huang, B. C. Zhang*, Z. B. Shao, L. He, Q. Zhang, J. S. Jie*, X. H. Zhang*, “Ultraminiaturized Stretchable Strain Sensors Based on Single Silicon Nanowires for Imperceptible Electronic Skins”, Nano Lett., 2020, 20(4), 2478-2485.
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8. Y. F. Xiao#, C. Y. Xiang#, S. L. Li*, C. Mao, H. T. Chen, J. X. Chen, S. Tian, X. Cui, Y. P. Wan, Z. M. Huang, X. Z. Li, X. H. Zhang, W. S. Guo*, C. S. Lee*, “Single-Photomolecular Nanotheranostics for Synergetic Near-Infrared Fluorescence and Photoacoustic Imaging-Guided Highly Effective Photothermal Ablation”, Small, 2020, 16(34), 2002672.
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10. Y. F. Xiao, J. X. Chen, S. L. Li, W. W. Tao, S. Tiao, K. Wang, X. Cui, Z. M. Huang, X. H. Zhang*, C. S. Lee*, “Manipulating Exciton Dynamics of Thermally Activated Delayed Fluorescence Materials for Tuning Two-Photon Nanotheranostics”, Chem. Sci., 2020, 11, 888-895.
11. W. Wang, B. Lu, W. Deng, X. J. Zhang*, Z. J. Lu, D. Wu, J. S. Jie*, X. H. Zhang, “Controlled 2D Growth of Organic Semiconductor Crystals by Suppressing ‘Coffee-Ring’ Effect”, Nano Res. 2020, 13(9), 2478-2484.
12. Y. Zhao, C. Y. Li, F. X. Song, Y. Li, Y. Liu, Y. J. Zhao, X. H. Zhang, Y. Zhao*, Z. H. Kang*, “All-in-One, Solid-State, Solar-Powered Electrochemical Cell”, ACS Appl. Mater. Interfaces, 2020, 12(51), 57182-57189.
13. G. L. Dai#, Y. H. Gao#, Z. H. Niu, P. He, X. H. Zhang, Y. Zhao*, H. S. Zhou*, “Dilution of the Electron Density in the π-Conjugated Skeleton of Organic Cathode Materials Improves the Discharge Voltage”, ChemSusChem, 2020, 13, 2264-2270.
14. C. K. Wu#, S. Zou#, J. Y. Zhu, X. Y. Ye, J. M. Ding, H. Sun*, X. S. Wang, G. Q. Xing, X. H. Zhang, X. D. Su*, “Forming Submicron in Micron Texture on the Diamond-Wire-Sawn mc-Si Wafer by Introducing Artificial Defects”, Prog. Photovolt. Res. Appl., 2020, 28(8), 788-797.
15. L. W. Huang#, Y. Y. Chen#, Y. Liu, T. T. Wu, H. M. Li, J. Ye, G. L. Dai*, X. H. Zhang, Y. Zhao*, “π-Extended Dihydrophenazine-Based Polymeric Cathode Material for High-Performance Organic Batteries”, ACS Sustain. Chem. Eng., 2020, 8(48), 17868-17875.
16. D. K. Zhang, K. X. Lv, C. R. Li, Y. S. Fang, S. H. Wang, Z. J. Chen, Z. Y. Wu, W. H. Guan, D. Y. Lou, W. Sun*, D. R. Yang, L. He*, X. H. Zhang*, “All-Earth-Abundant Photothermal Silicon Platform for CO2 Catalysis with Nearly 100% Sunlight Harvesting Ability”, Sol. RRL, 2020, 5, 2000387.
17. J. Lv#, J. Ye#, G. L. Dai, Z. H. Niu*, Y. Sun, X. H. Zhang, Y. Zhao*, “Flame-Retarding Battery Cathode Materials Based on Reversible Multi-Electron Redox Chemistry of Phenothiazine-Based Polymer”, J. Energy Chem., 2020, 47, 256-262.
18. X. Zhang, J. X. Chen, K. Wang*, Y. Z. Shi, X. C. Fan, S. L. Zhang, L. Wu, Y. Q. Li, X. M. Ou, X. H. Zhang*, “Charge-Transfer Transition Regulation of Thermally Activated Delayed Fluorescence Emitters by Changing the Valence of Sulfur Atoms”, J. Mater. Chem. C, 2020, 8, 17457-17463.
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20. F. Y. Hao#, Y. Z. Shi#, K. Wang*, X. C. Fan, L. Wu, J. Ye*, C. J. Zheng, Y. Q. Li, X. M. Ou, X. H. Zhang*, “Forcing Dimethylacridine Crooked to Improve the Efficiency of Orange-Red Thermally Activated Delayed Fluorescent Emitters”, J. Mater. Chem. C, 2020, 8, 10416-10421.
21. L. Liu, Q. Wei, Y. J. Cheng, H. L. Ma*, S. Y. Xiong*, X. H. Zhang*, “Theoretical Studies on Full-Color Thermally Activated Delayed Fluorescence Molecules”, J. Mater. Chem. C, 2020, 8, 5839-5846.
22. F. M. Xie, X. Y. Zeng, J. X. Zhou, Z. D. An, W. J. Wang, Y. Q. Li*, X. H. Zhang, J. X. Tang*, “Intramolecular H-bond Design for Efficient Orange–Red Thermally Activated Delayed Fluorescence Based on a Rigid Dibenzo[f,h]pyrido[2,3-b]quinoxaline Acceptor”, J. Mater. Chem. C, 2020, 8, 15728.
23. D. M. Sun, S. M. Suresh, D. Hall, M. Zhang, C. F. Si, D. B. Cordes, A. M. Z. Slawin, Y. Olivier*, X. H. Zhang*, E. Zysman-Colmanb*, “The Design of Extended Multiple Resonance Thermally Activated Delayed Fluorescence Emitter Based on Polycyclic Amine/Carbonyl System”, Mater. Chem. Front., 2020, 4, 2018-2022.
24. Q. Wei, L. Liu, S. Y. Xiong*, X. J. Zhang, W. Deng, X. H. Zhang, J. S. Jie*, “Theoretical Studies of Bipolar Transport in CnBTBT-F(m)TCNQ Donor-Acceptor Cocrystals”, J. Phys. Chem. Lett., 2020, 11(2), 359-365.
25. X. B. Yang*, H. Xu, W. Z. Liu, Q. Y. Bi, L. J. Xu, J. X. Kang, M. N. Hedhili, B. Q. Sun, X. H. Zhang, S. D. Wolf*, “Atomic Layer Deposition of Vanadium Oxide as Hole-Selective Contact for Crystalline Silicon Solar Cells”, Adv. Electron. Mater., 2020, 6(8), 2000467.
26. Y. F. Xia, M. Zhang, S. M. Ren, J. L. Song, J. Ye*, M. G. Humphrey, C. J. Zheng, K. Wang, X. H. Zhang*, “6,12-Dihydro-6,12-diboradibenzo[def,mno]chrysene: A Doubly Boron-Doped Polycyclic Aromatic Hydrocarbon for Organic Light Emitting Diodes by a One-Pot Synthesis”, Org. Lett., 2020, 22(20), 7942-7946.
27. F. Y. Hao, Y. Z. Shi, K. Wang*, S. Y. Xiong, X. C. Fan, L. Wu, C. J. Zheng*, Y. Q. Li, X. M. Ou, X. H. Zhang*, “Chiral Thermally Activated Delayed Fluorescence Emitters with Dual Conformations Based on A Pair of Enantiomeric Donors Containing Asymmetric Carbons”, Dyes and Pigments, 2020, 178, 108336.
28. T. Zhou#, Z. H. Li#, Y. J. Cheng, Y. X. Ni, S. Volz, D. Donadio, S. Y. Xiong*, W. Q. Zhang, X. H. Zhang*, “Thermal Transport in Amorphous Small Organic Materials: A Mechanistic Study”, Phys. Chem. Chem. Phys., 2020, 22, 3058-3065.
29. Y. M. Qian, Y. Y. Liu, Y. Zhao*, X. H. Zhang, G. H. Yu, “Single vs Double Atom Catalyst for N2 Activation in Nitrogen Reduction Reaction: A DFT Perspective”, EcoMat, 2020, 2(1), e12014.
30. F. Zhang#, Y. J. Cheng#, Z. H. Niu, J. Ye, G. L. Dai*, X. H. Zhang, Y. Zhao*, “Tailoring the Voltage Gap of Organic Battery Materials Based on a Multi-Electron Redox Chemistry”, ChemElectroChem, 2020, 7(7), 1781-1788.
31. P. L. Zhong, C. J. Zheng*, M. Zhang, J. W. Zhao, H. Y. Yang, Z. Y. He, H. Lin, S. L. Tao*, X. H. Zhang, “Highly Efficient Ternary Polymer-Based Solution-Processable Exciplex with Over 20% External Quantum Efficiency in Organic Light-Emitting Diode”, Org. Electron., 2020, 76, 105449.
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