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Featured researches published by Xianhong Zhang.


Polymer Chemistry | 2017

Photoinduced controlled radical polymerization of methacrylates with benzaldehyde derivatives as organic catalysts

Wenchao Ma; Xianhong Zhang; Yuhong Ma; Dong Chen; Li Wang; Changwen Zhao; Wantai Yang

A photo-induced controlled radical polymerization of methacrylates with perfluoro-1-iodohexane as an initiator and benzaldehyde derivatives, including p-anisaldehyde, p-cyanobenzaldehyde and 2,4-dimethoxy benzaldehyde, as organic photocatalysts is demonstrated by using 23 W compact fluorescent lamps as the light source in the presence of a potential reductant N,N-dimethylaniline. Linear evolution of the molecular weight with monomer conversion is observed under the optimized conditions. Additionally, successful chain extension reactions are obtained by a one-pot process and with the as-prepared polymers as macroinitiators. Specifically, the one-pot synthesis of PPEGMA (conversion = 85%) with a high molecular weight and relatively narrow molecular weight distribution (Mn,GPC = 44 000 g mol−1, PDI = 1.54) is achieved by using PPEGMA-I (Mn,GPC = 10 200 g mol−1, PDI = 1.33) as a macroinitiator and p-anisaldehyde as an organocatalyst. Although the current technology exhibits a somewhat low controllability for preparing block copolymers, compared with the common ATRP and RAFT polymerization process, it offers a promising alternative as a metal-free organo-catalyzed photo-induced variant of ATRP.


Applied Surface Science | 2014

High dielectric constant and low dielectric loss hybrid nanocomposites fabricated with ferroelectric polymer matrix and BaTiO3 nanofibers modified with perfluoroalkylsilane

Xianhong Zhang; Yuhong Ma; Changwen Zhao; Wantai Yang


Macromolecular Chemistry and Physics | 2013

One‐Pot Synthesis of PTFEMA‐b‐PMMA‐b‐PTFEMA by Controlled Radical Polymerization with a Difunctional Initiator in Conjugation with Photoredox Catalyst of Ir(ppy)3 Under Visible Light

Xianhong Zhang; Changwen Zhao; Yuhong Ma; Haochuan Chen; Wantai Yang


Applied Surface Science | 2013

Preparation and dielectric properties of core–shell structural composites of poly(1H,1H,2H,2H-perfluorooctyl methacrylate)@BaTiO3 nanoparticles

Xianhong Zhang; Haochuan Chen; Yuhong Ma; Changwen Zhao; Wantai Yang


Applied Surface Science | 2017

Improving dielectric properties of BaTiO3/poly(vinylidene fluoride) composites by employing core-shell structured BaTiO3@Poly(methylmethacrylate) and BaTiO3@Poly(trifluoroethyl methacrylate) nanoparticles

Xianhong Zhang; Sidi Zhao; Fang Wang; Yuhong Ma; Li Wang; Dong Chen; Changwen Zhao; Wantai Yang


Applied Surface Science | 2015

Preparation of a hybrid core–shell structured BaTiO3@PEDOT nanocomposite and its applications in dielectric and electrode materials

Teng Wang; Xianhong Zhang; Dong Chen; Yuhong Ma; Li Wang; Changwen Zhao; Wantai Yang


ECS Journal of Solid State Science and Technology | 2015

High Dielectric Performance Composites with a Hybrid BaTiO3/Graphene as Filler and Poly(vinylidene fluoride) as Matrix

Xianhong Zhang; Yuhong Ma; Changwen Zhao; Wantai Yang


Applied Surface Science | 2016

A scalable route to prepare core–shell structured ZnO@PEDOT nanowires and PEDOT nanotubes and their properties as electrode materials

Fang Wang; Xianhong Zhang; Le Yang; Dehong Xu; Yuhong Ma; Dong Chen; Li Wang; Changwen Zhao; Wantai Yang


Journal of Polymer Science Part A | 2018

Visible light-induced RAFT polymerization of methacrylates with benzaldehyde derivatives as organophotoredox catalysts

Qian Yang; Xianhong Zhang; Wenchao Ma; Yuhong Ma; Dong Chen; Li Wang; Changwen Zhao; Wantai Yang


Applied Surface Science | 2018

Synthesis of HNTs@PEDOT composites via in situ chemical oxidative polymerization and their application in electrode materials

Fang Wang; Xianhong Zhang; Yuhong Ma; Wantai Yang

Collaboration


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Yuhong Ma

Beijing University of Chemical Technology

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Wantai Yang

Beijing University of Chemical Technology

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Changwen Zhao

Beijing University of Chemical Technology

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Dong Chen

Beijing University of Chemical Technology

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Fang Wang

Beijing University of Chemical Technology

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Li Wang

Beijing University of Chemical Technology

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Haochuan Chen

Beijing University of Chemical Technology

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Qian Yang

Beijing University of Chemical Technology

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Teng Wang

Beijing University of Chemical Technology

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Wenchao Ma

Beijing University of Chemical Technology

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