J
Jiawei Wang
Researcher at Chinese Academy of Sciences
Publications - 34
Citations - 1018
Jiawei Wang is an academic researcher from Chinese Academy of Sciences. The author has contributed to research in topics: Pentacene & Thin-film transistor. The author has an hindex of 14, co-authored 33 publications receiving 729 citations. Previous affiliations of Jiawei Wang include Center for Advanced Materials & Center for Excellence in Education.
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Journal ArticleDOI
An Ultralong Lifespan and Low-Temperature Workable Sodium-Ion Full Battery for Stationary Energy Storage
Ying-Ying Wang,Bao-Hua Hou,Jin-Zhi Guo,Qiu-Li Ning,Wei-Lin Pang,Jiawei Wang,Changli Lü,Xing-Long Wu +7 more
TL;DR: In this article, an advanced low-T sodium-ion full battery (SIFB) assembled by an anode of 3D Se/graphene composite and a high-voltage cathode (Na3V2(PO4)2O2F, NVPOF) is developed.
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Compactly Coupled Nitrogen-Doped Carbon Nanosheets/Molybdenum Phosphide Nanocrystal Hollow Nanospheres as Polysulfide Reservoirs for High-Performance Lithium-Sulfur Chemistry
Zhonghui Sun,Xing-Long Wu,Zhangquan Peng,Jiawei Wang,Shiyu Gan,Yuwei Zhang,Dongxue Han,Li Niu,Li Niu +8 more
TL;DR: 3D hierarchical nitrogen-doped carbon nanosheets/molybdenum phosphide nanocrystal hollow nanospheres (MoP@C/N HCSs) are introduced to Li-S batteries via decorating commercial separators to inhibit polysulfides diffusion and offer a brand new guidance for rational separator design into the energy chemistry of high-stable Li- S batteries.
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Photoelectric Plasticity in Oxide Thin Film Transistors with Tunable Synaptic Functions
Quantan Wu,Quantan Wu,Jiawei Wang,Jiawei Wang,Jingchen Cao,Jingchen Cao,Congyan Lu,Congyan Lu,Guanhua Yang,Guanhua Yang,Xuewen Shi,Xuewen Shi,Xichen Chuai,Xichen Chuai,Yuxin Gong,Yuxin Gong,Yue Su,Yue Su,Ying Zhao,Ying Zhao,Nianduan Lu,Nianduan Lu,Geng Di,Geng Di,Hong Wang,Ling Li,Ling Li,Ming Liu,Ming Liu +28 more
TL;DR: Artificial synapses based on indium–gallium–zinc oxide (IGZO) TFT are fabricated and the photoelectric plasticity is investigated, representing a major advance toward implementation of full synaptic functionality in neuromorphic hardware.
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Response enhancement mechanism of NO2 gas sensing in ultrathin pentacene field-effect transistors
TL;DR: In this article, a pentacene ultrathin film transistor has been integrated into the implement of a gas sensor based on an increase in its mobility and a shift of its threshold voltage.
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Novel top-contact monolayer pentacene-based thin-film transistor for ammonia gas detection.
TL;DR: After exposure to NH3 gas, the carrier mobility at the monolayer OFET channel decreased down to one-third of its original value, leading to a several orders of magnitude decrease in the drain current, which tremendously enhanced the gas detection sensitivity.