He Yan, Ph.D.

2004 Northwestern University, Evanston, IL 
Catalyic Chemistry
"He Yan"
Mean distance: 7.78


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Tobin Jay Marks grad student 2004 Northwestern
 (High-performance hole transport layers for polymer light -emitting diodes.)
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Luo Z, Ma R, Yu J, et al. (2022) Heteroheptacene-based acceptors with thieno[32-]pyrrole yield high-performance polymer solar cells. National Science Review. 9: nwac076
Kim HK, Yu H, Pan M, et al. (2022) Linker Unit Modulation of Polymer Acceptors Enables Highly Efficient Air-Processed All-Polymer Solar Cells. Advanced Science (Weinheim, Baden-Wurttemberg, Germany). e2202223
Sun Y, Ma R, Kan Y, et al. (2022) Simultaneously Enhanced Efficiency and Mechanical Durability in Ternary Solar Cells Enabled by Low-cost Incompletely Separated Fullerenes. Macromolecular Rapid Communications. e2200139
Yu H, Wang Y, Kim HK, et al. (2022) A Vinylene-Linker-Based Polymer Acceptor Featuring Co-planar and Rigid Molecular Conformation Enables High-Performance All-Polymer Solar Cells. Advanced Materials (Deerfield Beach, Fla.). e2200361
Cai G, Chen Z, Xia X, et al. (2022) Pushing the Efficiency of High Open-Circuit Voltage Binary Organic Solar Cells by Vertical Morphology Tuning. Advanced Science (Weinheim, Baden-Wurttemberg, Germany). e2200578
Liu B, Rocca D, Yan H, et al. (2021) Beyond Conformational Control: Effects of Noncovalent Interactions on Molecular Electronic Properties of Conjugated Polymers. Jacs Au. 1: 2182-2187
Ding S, Ma R, Yang T, et al. (2021) Boosting the Efficiency of Non-fullerene Organic Solar Cells via a Simple Cathode Modification Method. Acs Applied Materials & Interfaces
Jin L, Ma R, Liu H, et al. (2021) Boosting Highly Efficient Hydrocarbon Solvent-Processed All-Polymer-Based Organic Solar Cells by Modulating Thin-Film Morphology. Acs Applied Materials & Interfaces
Liu X, Ma R, Wang Y, et al. (2021) Significantly Boosting Efficiency of Polymer Solar Cells by Employing a Nontoxic Halogen-Free Additive. Acs Applied Materials & Interfaces
Jiang K, Zhang J, Peng Z, et al. (2021) Pseudo-bilayer architecture enables high-performance organic solar cells with enhanced exciton diffusion length. Nature Communications. 12: 468
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