Ren Lianbing
Peking University
22 Papers
56 Citations
Ren Lianbing is an academic researcher from Peking University. The author has contributed to research in topics: Nanoparticle & Magnetic nanoparticles. The author has an hindex of 6, co-authored 22 publications. Previous affiliations of Ren Lianbing include Anhui Normal University.
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Papers
Synthesis of Monodisperse, Hierarchically Mesoporous, Silica Microspheres Embedded with Magnetic Nanoparticles
TL;DR: The hierarchically mesoporous magnetic silica microspheres embedded with magnetic nanoparticles resulted in a high bovine serum albumin (BSA) protein adsorption capacity (260 mg/g) and a fast Adsorption rate (reaching equilibrium with 8 h).
Fabrication of monodisperse porous zirconia microspheres and their phosphorylation for Friedel-Crafts alkylation of indoles
He Jie,Chen Jiwei,Ren Lianbing,Wang Yong,Teng Chao,Mei Hong,Jing Zhao,Jing Zhao,Biwang Jiang +8 more
TL;DR: In situ pyridine-adsorbed FT-IR analysis of the best performing PhZr microspheres suggested the presence of both Lewis and Brønsted acid sites, and the total acidity as measured by temperature-programmed desorption of ammonia (NH3-TPD) was 328 μmol·g(-1).
Fabrication of Monodisperse Porous Silica Microspheres with a Tunable Particle Size and Pore Size for Protein Separation
Chen Jiwei,Lili Zhu,Ren Lianbing,Chao Teng,Yong Wang,Biwang Jiang,He Jie +6 more
- 16 Aug 2018
TL;DR: The modified monodisperse porous silica microspheres exhibited an excellent separation performance with a high protein recovery and good reproducibility and the effects of particle size and pore size on the chromatographic behavior were discussed.
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Preparation of uniform magnetic recoverable catalyst microspheres with hierarchically mesoporous structure by using porous polymer microsphere template
Ren Lianbing,Teng Chao,Zhu Lili,He Jie,You Wang,Xinbing Zuo,Mei Hong,Yong Wang,Biwang Jiang,Jing Zhao,Jing Zhao +10 more
TL;DR: The fabrication of porous silica microspheres embedded with magnetic and gold nanoparticles as magnetic recoverable catalysts showing high performance in catalytic reduction of 4-nitrophenol, special convenient magnetic separability, long life, and good reusability makes the micro Spheres a novel stable and highly efficient catalyst system for various catalytic industry processes.
One-Pot Synthesis of 1,2,3-Triazoles using Polymer-Supported Propyne in Aqueous Solution
TL;DR: In this article, a liquid-phase synthesis of 1,2,3-triazoles using poly(ethylene glycol) as support in aqueous solution was described, and a series of unexpected products were also formed under the same condition.
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