T
Tao Guo
Researcher at Beijing Institute of Technology
Publications - 9
Citations - 23
Tao Guo is an academic researcher from Beijing Institute of Technology. The author has contributed to research in topics: Chemistry & Engineering. The author has an hindex of 1, co-authored 2 publications receiving 5 citations.
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Achieving hierarchical structure with superhydrophobicity and enhanced anti-corrosion via electrochemical etching and chemical vapor deposition
TL;DR: In this paper , a simple and interesting method for fabricating super-hydrophobic surfaces without destroying the metal substrate was proposed, which exhibited a high contact angle (CA) of 158.5 ± 0.4° and a low slide angle (SA) of 2.1 − 0.2°.
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Preparation of Bi2O3/Al Core-Shell Energetic Composite by Two-Step Ball Milling Method and Its Application in Solid Propellant.
TL;DR: The theoretical calculation results showed that replacing the partial Al with Bi2O3/Al core-shell energetic composite can make the density of propellant reach 2.056 g/cm3, and the density specific impulse reach 502.3 s·g/ cm3, which is significantly higher than the density and density specific impulses of the conventional composite solid propellant.
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Facile fabrication of semi-IPN hydrogel adsorbent based on quaternary cellulose via amino-anhydride click reaction in water.
TL;DR: In this article , a semi-interpenetrating network hydrogel (semi-IPN-Gel) based on quaternary cellulose (QC) was prepared by the amino-anhydride click reaction between maleic anhydride copolymer and polyacrylamine hydrochloride (PAH), and its adsorption properties for Eosin Y were studied.
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Preparation and characterization of self-healing furan-terminated polybutadiene (FTPB) based on Diels–Alder reaction
Min Xia,Min Xia,Yanjie Zhang,Qing Na,Tao Guo,Minghao Zhang,Zhenyu Qi,Ningning Liu,Fan‐Zhi Yang,Yunjun Luo,Yunjun Luo,Wei Yang +11 more
TL;DR: In this paper, the authors describe the self-healing process of FTPB-DA. But they do not describe the process of self-repairing process of DDA.
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Preparation of thermal/ pH ‐sensitive semi‐interpenetrating network hydrogels from quaternary chitosan via an amino‐anhydride click reaction for efficient dye removal from aqueous solutions
TL;DR: In this paper , a thermal/pH-sensitive quaternary chitosan-based semi-interpenetrating network hydrogels were facilely fabricated via an amino-anhydride click reaction in aqueous solutions and used for water treatment.