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Liqiang Huang

Researcher at Tongji University

Publications -  41
Citations -  1301

Liqiang Huang is an academic researcher from Tongji University. The author has contributed to research in topics: Polymer solar cell & Organic solar cell. The author has an hindex of 17, co-authored 34 publications receiving 661 citations. Previous affiliations of Liqiang Huang include Nanchang University.

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Deciphering the Role of Fluoroethylene Carbonate towards Highly Reversible Sodium Metal Anodes

TL;DR: In this paper , fluoroethylene carbonate (FEC) is incorporated into the primary Na+ solvation sheath, and the lowest unoccupied molecular orbital (LUMO) levels of such Na+-FEC solvates undergo further decrease, with spin electrons residing either on the O=CO(O) moiety of FEC or sharing between Na+ and its C=O bond.
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Polyolefin Elastomer as the Anode Interfacial Layer for Improved Mechanical and Air Stabilities in Nonfullerene Solar Cells.

TL;DR: The commercial and chemically stable polyolefin elastomer (POE) was incorporated into the high-performance PBDB-T:ITIC, PM 6:IT-4F and PM6:Y6 non-fullerene systems to serve as anode interfacial layer, affording remarkably improved mechanical and environmental stability as compared with the most studied MoO3 interfacial Layer.
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High-Performance Polymer Solar Cells Realized by Regulating the Surface Properties of PEDOT:PSS Interlayer from Ionic Liquids

TL;DR: This work concludes that an appropriate interfacial conductivity is as essential as the suitable work function for an efficient buffer layer in ionic liquids modified poly(3,4-ethylenedioxythiophene):poly(styrenesulfonate) (PEDOT:PSS).
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High conductive PEDOT via post-treatment by halobenzoic for high-efficiency ITO-free and transporting layer-free organic solar cells

TL;DR: The 4-halobenzoics (XBA) including 4-fluorobenzzoic acid (FBA), 4-chlorobenzosic acid, 4-bromobenzophosphoric acid (BBA), and 4-iodobenzoxic acid(IBA) have been applied to modify poly(3,4-ethylenedioxythiophene):poly(styrene sulfonate) (PEDOT:PSS) by simply spin-coating solvent treatment.
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Multi-Chlorine-Substituted Self-Assembled Molecules As Anode Interlayers: Tuning Surface Properties and Humidity Stability for Organic Photovoltaics.

TL;DR: surface modification of indium tin oxide (ITO) electrode by a series of Cl-containing SASMs has been exploited to control the surface properties of ITO and device performance for organic photovoltaics, and it is discovered that device performance is closely associated with the humidity of ambient conditions.