Yaogang Li
Donghua University
402 Papers
1.5K Citations
Yaogang Li is an academic researcher from Donghua University. The author has contributed to research in topics: Graphene & Electrochromism. The author has an hindex of 48, co-authored 309 publications. Previous affiliations of Yaogang Li include Georgia Institute of Technology.
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Papers
Dual-Mechanism and Multimotion Soft Actuators Based on Commercial Plastic Film
TL;DR: A simple method to fabricate a polyethylene-based soft actuator that has controllable anisotropic structure and can realize multiple motions, including bidirectional bending and twisting based on dual mechanisms, which is a rare phenomenon.
Enhanced immunofluorescence detection of a protein marker using a PAA modified ZnO nanorod array-based microfluidic device.
Zhihua Wu,De Zhao,Hou Chengyi,Lei Liu,Jianhua Chen,Hui Huang,Qinghong Zhang,Yourong Duan,Yaogang Li,Hongzhi Wang +9 more
TL;DR: The limit of detection reached 100 fg mL-1, which indicated that the ZnO@PAA nanorod array-based microfluidic device exhibits remarkable fluorescence detection performance towards protein markers and possesses potential to be applied to point-of-care diagnostics and high throughput cancer biomarker detection.
Facile fabrication of magnetically responsive PDMS fiber for camouflage
TL;DR: A new type of photonic crystal PDMS fiber which exhibits tunable structural color upon exposure to external magnetic field is described, which is expected to have some important applications such as none-powered and functionalized fibers for camouflage.
Controlling the transformation of intermediate phase under near-room temperature for improving the performance of perovskite solar cells
Xuefei Han,Hao Xiong,Jiabin Qi,Yichuan Rui,Xin Zhang,Hou Chengyi,Yaogang Li,Hongzhi Wang,Qinghong Zhang +8 more
TL;DR: In this article, an effective near-room-temperature fabrication technique was proposed to prepare high quality organolead halide perovskite films. But this technique requires a large amount of cesium cations to be doping into a precursor solution.
Highly integrated fiber-shaped thermoelectric generators with radially heterogeneous interlayers
TL;DR: In this paper , a flexible scrolled thermoelectric (TE) module with interlayers of radial heterojunction that possesses high-density p-n junctions, accomplished by rolling a patterned carbon nanotube film and a cellulose acetate nanofiber membrane (insulation).