Siyao Wang
North Carolina State University
12 Papers
28 Citations
Siyao Wang is an academic researcher from North Carolina State University. The author has contributed to research in topics: Catalysis & Chemistry. The author has an hindex of 6, co-authored 9 publications. Previous affiliations of Siyao Wang include Zhejiang University.
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Papers
Ultrafast all-climate aluminum-graphene battery with quarter-million cycle life
Hao Chen,Hanyan Xu,Siyao Wang,Tieqi Huang,Jiabin Xi,Shengying Cai,Fan Guo,Zhen Xu,Weiwei Gao,Chao Gao +9 more
TL;DR: A “trihigh tricontinuous” graphene film cathode with features of high quality, orientation, and channeling for local structures (3H) and continuous electron-conducting matrix, ion-diffusion highway, and electroactive mass for the whole electrode (3C) opens an avenue for a future super-batteries.
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Cellulose-Based Hybrid Aerogels: Strategies toward Design and Functionality.
TL;DR: A survey of the historical background and scientific achievements in the design and development of cellulose-based hybrid aerogel materials is encompassed in this paper, where the impacts of incorporating organic and inorganic ingredients with cellulose and the corresponding synergistic effects are discussed in terms of their design and functionality.
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Oxide Film Efficiently Suppresses Dendrite Growth in Aluminum-Ion Battery
TL;DR: It is aluminum oxide film that efficiently restricts the growth of crystalline Al dendrite and thus improves the cycling stability of Al anode, and the Al-graphene full cells can attain up to 45 000 stable cycles.
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Polymer of intrinsic microporosity (PIM) based fibrous mat: combining particle filtration and rapid catalytic hydrolysis of chemical warfare agent simulants into a highly sorptive, breathable, and mechanically robust fiber matrix
Siyao Wang,Natalie Pomerantz,Zijian Dai,Wenyi Xie,E.E. Anderson,T. Miller,Saad A. Khan,Gregory N. Parsons +7 more
- 01 Dec 2020
TL;DR: In this article, the authors presented a highly sensitive, breathable, and mechanically strong aerosol-protective layered fabric with prominent catalytic degradation capability of CWA simulant, through novel material selection and engineering design.
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Fabrication of a freestanding metal organic framework predominant hollow fiber mat and its potential applications in gas separation and catalysis
Zijian Dai,Zijian Dai,Dennis T. Lee,Kaihang Shi,Siyao Wang,Heather F. Barton,Jie Zhu,Jiaqi Yan,Qinfei Ke,Gregory N. Parsons +9 more
TL;DR: In this article, the authors reported a facile and gentle strategy to produce self-supported MOF predominant hollow fiber mats, including MIL-53(Al)−NH2, Al-PMOF, and ZIF-8.
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