J
Jiajie Liang
Researcher at Nankai University
Publications - 107
Citations - 14082
Jiajie Liang is an academic researcher from Nankai University. The author has contributed to research in topics: Graphene & Polymer. The author has an hindex of 42, co-authored 93 publications receiving 11073 citations. Previous affiliations of Jiajie Liang include University of California & University of California, Los Angeles.
Papers
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Molecular-Level Dispersion of Graphene into Poly(vinyl alcohol) and Effective Reinforcement of their Nanocomposites
TL;DR: In this paper, the preparation of polyvinyl alcohol (PVA) nanocomposites with graphene oxide (GO) using a simple water solution processing method is reported, and efficient load transfer is found between the nanofiller graphene and matrix PVA and the mechanical properties of the graphene-based nanocompositionite with molecule-level dispersion are significantly improved.
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An overview of the applications of graphene-based materials in supercapacitors.
TL;DR: Several key issues for improving the structure of graphene-based materials and for achieving better capacitor performance, along with the current outlook for the field are discussed.
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Electromagnetic interference shielding of graphene/epoxy composites
Jiajie Liang,Yan Wang,Yi Huang,Yanfeng Ma,Zunfeng Liu,Jinming Cai,Chendong Zhang,Hong-Jun Gao,Yongsheng Chen +8 more
TL;DR: In this paper, composites based on graphene-based sheets have been fabricated by incorporating solution-processable functionalized graphene into an epoxy matrix, and their electromagnetic interference (EMI) shielding studies were studied.
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Elastomeric polymer light-emitting devices and displays
TL;DR: In this article, a stretchable polymer LED is fabricated that is capable of emitting light when subjected to strains as large as 120% and a prototype 5 × 5 pixel monochrome display based on an array of these LEDs is demonstrated.
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Silver Nanowire Percolation Network Soldered with Graphene Oxide at Room Temperature and Its Application for Fully Stretchable Polymer Light-Emitting Diodes
TL;DR: The preparation of a transparent conductive electrode (TCE) based on a silver nanowire (AgNW) percolation network modified with graphene oxide (GO) enables the GO sheets to wrap around and solder the AgNW junctions and thus dramatically reduce the inter-nanowire contact resistance without heat treatment or high force pressing.