Xi-Xi Wang
Beijing Institute of Technology
36 Papers
28 Citations
Xi-Xi Wang is an academic researcher from Beijing Institute of Technology. The author has contributed to research in topics: Microwave & Graphene. The author has an hindex of 22, co-authored 30 publications.
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Papers
Reduced graphene oxides: light-weight and high-efficiency electromagnetic interference shielding at elevated temperatures.
Bo Wen,Mao-Sheng Cao,Ming-Ming Lu,Wen-Qiang Cao,Honglong Shi,Jia Liu,Xi-Xi Wang,Haibo Jin,Xiao-Yong Fang,Wenzhong Wang,Jie Yuan +10 more
TL;DR: Chemical graphitized r-GOs, as the thinnest and lightest material in the carbon family, exhibit high-efficiency electromagnetic interference shielding at elevated temperature, attributed to the cooperation of dipole polarization and hopping conductivity.
1.5K
Thermally Driven Transport and Relaxation Switching Self-Powered Electromagnetic Energy Conversion.
TL;DR: Graphene networks with "well-sequencing genes" can serve as nanogenerators, thermally promoting electromagnetic wave absorption by 250%, with broadened bandwidth covering the whole investigated frequency, opening up an unexpected horizon for converting, storing, and reusing waste electromagnetic energy.
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Electromagnetic Response and Energy Conversion for Functions and Devices in Low‐Dimensional Materials
Mao-Sheng Cao,Xi-Xi Wang,Min Zhang,Jin-Cheng Shu,Wen-Qiang Cao,Hui-Jing Yang,Xiao-Yong Fang,Jie Yuan +7 more
Abstract: Low‐dimensional materials have been long sought after for their particular electromagnetic (EM) functions, with promising applications in EM wave absorbing and shielding, communicating and imaging, sensing and detecting, driving and actuating, etc. Herein, across the whole EM spectrum, low‐dimensional EM functional materials and devices are highly focused on. The crystal engineering and function‐guiding features addressed relate to crystal and electronic structures, EM responses and properties, energy conversion, as well as EM wave absorbing and shielding. Moreover, insight is given into this rapidly broadening field, the main challenges are proposed and future directions are predicted.
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Ultrathin graphene: electrical properties and highly efficient electromagnetic interference shielding
TL;DR: In this article, a review of the advance in graphene-based EMI shielding materials is presented, where the authors intensively evaluate the mechanism, such as polarization, hopping conduction and interface scattering.
598
Graphene nanohybrids: excellent electromagnetic properties for the absorbing and shielding of electromagnetic waves
Mao-Sheng Cao,Chen Han,Xi-Xi Wang,Min Zhang,Yan-Lan Zhang,Jin-Cheng Shu,Hui-Jing Yang,Xiao-Yong Fang,Jie Yuan +8 more
TL;DR: In this paper, the authors systematically combed the structures and electromagnetic functions of graphene hybrids, and demonstrated the advances in the microwave response mechanism, including relaxation, charge transport, magnetic resonance, and eddy currents, as well as magnetic-dielectric synergistic effects.
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