Lu Group

Department of Chemical Engineering, Tsinghua University

Recent progress

Microflow system for controlled synthesis of ethylene-vinyl acetate copolymers: Continuous copolymerization and kinetic study作者:HeYH, Zhang ZZ, Ke H, Lu YC*AbstractEthylene content in ethylene–viny...

Alcoholysis of Ethylene-Vinyl Acetate CopolymerCatalyzed by Alkaline: A Kinetic Study Based on In Situ FTIR Spectroscopy作者:He yuhang, Ke hua, Lu yangchengAbstractA new method was developed to study...

A new method for synthesizing magnetic nanocomposite latex particles with a significant magnetic response and high coating rate is reported herein. Based on a microflow pl...

The combination of microstructural units is an effective strategy to improve the micromixing of liquid phase systems, especially viscous systems.

In this work, for the performance enhancement of iron hexacyanoferrate, an electrochemically active Mn-doped iron hexacyanoferrate cathode is fabricated via a bottom-up ap...

The ion exchange resin supported chromium(III) is applied to catalyze the ring-opening reaction of ethylene oxide with acrylic acid and shows good catalytic performance. Based on the kinetics study, i

An initiating system composed by ethylaluminum sesquichloride (Et3Al2Cl3)//2,6-dimethylpyridine (DMP) is established for fast living cationic polymerization of isobutylene. The polymerization can be a

In this work, using electrochemical active Fe as an ion-exchange element (attack side) and the NaxMnFe(CN)6 slurry with a high solid content (MnHCF) as a template (defensive side), a series of binary

A tubular reactor with a micromixer was introduced in attempt to enhance the amination reaction of 4-nitrochlorobenzene in terms of the process efficiency and safety.

In this work, a direct continuous synthesis route of oleic acid (OA)-modified Fe3O4 nanoparticles was proposed and achieved by combining flow co-precipitation of Fe3O4 nanoparticles in a membrane disp

A strategy of dissolving chlorine gas in 1,2-dichloroethane as the chlorine source for a liquid–liquid two-phase chlorination reaction was proposed in this study.

In the preparation of KH2PO4 using the extraction method, Cl− in the aqueous phase could react with the H3PO4–TOA complex in the organic phase.

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