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Dive into the research topics where Jun-Bing Fan is active.

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Featured researches published by Jun-Bing Fan.


Langmuir | 2008

Green chemistry for large-scale synthesis of semiconductor quantum dots.

Jinhua Liu; Jun-Bing Fan; Zheng Gu; Jing Cui; Xiao-Bo Xu; Zhi-Wu Liang; Sheng-Lian Luo; Ming-Qiang Zhu

Large-scale synthesis of semiconductor nanocrystals or quantum dots (QDs) with high concentration and high yield through simultaneously increasing the precursor concentration was introduced. This synthetic route conducted in diesel has produced gram-scale CdSe semiconductor quantum dots (In optimal scale-up synthetic condition, the one-pot yield of QDs is up to 9.6g). The reaction has been conducted in open air and at relatively low temperature at 190-230 degrees C in the absence of expensive organic phosphine ligands, aliphatic amine and octadecene, which is really green chemistry without high energy cost for high temperature reaction and unessential toxic chemicals except for Cd, which is the essential building block for QDs.


Langmuir | 2009

Microwave-mediated nonaqueous synthesis of quantum dots at moderate temperature.

Ming-Qiang Zhu; Zheng Gu; Jun-Bing Fan; Xiao-Bo Xu; Jing Cui; Jinhua Liu; Feng Long

The use of microwave irradiation to accelerate both inorganic and organic chemical reactions has attracted widespread attention. Generally, microwave-mediated synthesis of quantum dots (QDs) has been conducted in aqueous solution. Here, using commercial diesel and glycerol as reaction medium, a microwave-mediated nonaqueous method toward CdSe QDs with size-tunable photoluminescent properties produces oleic-acid-protected QDs at moderate reaction temperatures of 50-140 degrees C, which are much lower than the current temperature necessary for the synthesis of CdSe QDs in organic solvents. The appropriate condition optimization for high-quality CdSe QDs shows that different sizes of CdSe QDs with emission wavelengths between 450 and 600 nm have been synthesized through varying time, temperature, feed ratio, and reaction medium.


Colloid and Polymer Science | 2012

Hierarchical mesostructures of biodegradable triblock copolymers via evaporation-induced self-assembly directed by alkali metal ions

Jun-Bing Fan; Feng Long; Zhi-Wu Liang; Matthew P. Aldred; Ming-Qiang Zhu

Hierarchical mesostructures of poly(ε-caprolactone)-b-poly(ethylene oxide)-b-poly(ε-caprolactone) (PCL-PEO-PCL) triblock copolymers have been grown from evaporation-induced self-assembly directed by alkali metal ions. The self-assembly process began with a dilute homogeneous solution of the triblock copolymers in a mixture of tetrahydrofuran (THF) and water. THF preferentially evaporated under reduced pressure and induced the formation of amphiphilic polymer micelles. The spherical polymer micelles formed both in deionized water and NaOH aqueous solution. However, different mesostructures were discovered during the film depositing process for scanning electron microscopy observation. The polymer micelles were observed for the deposition sample in deionized water while sisal-like hierarchical mesostructures resulted from the film deposition of polymer micelles in NaOH aqueous solution. The sisal-like mesostructures and their formation process were observed through scanning electron microscopy, transmission electron microscopy, fluorescent microscopy, X-ray diffraction, and Fourier transform infrared spectroscopy. Detailed study revealed that during evaporation-induced self-assembly of PCL-PEO-PCL amphiphilic triblock copolymer directed by alkali metal ions, the sodium ions and polymer micelles increasingly concentrated in NaOH aqueous solution and the solvent quality for the diblock progressively decreased, which resulted in the stronger coordination between alkali metal ions and PEO ligands in the block copolymer and PEO segment crystallization.


Chemical Physics Letters | 2011

Microwave-controlled ultrafast synthesis of uniform silver nanocubes and nanowires

Tian Zhao; Jun-Bing Fan; Jing Cui; Jinhua Liu; Xiao-Bo Xu; Ming-Qiang Zhu


Macromolecular Chemistry and Physics | 2011

A Convenient Method for the Synthesis of the Amphiphilic Triblock Copolymer Poly(L‐lactic acid)‐block‐Poly(L‐lysine)‐block‐Poly(ethylene glycol) Monomethyl Ether

Li Xiang; Lin-Jing Shen; Feng Long; Ke Yang; Jun-Bing Fan; Ya-Jing Li; Jiannan Xiang; Ming-Qiang Zhu


Chemical Communications | 2010

Tetrabutyl titanate-controlled polymerization of ε-caprolactone at ambient temperature

Jun-Bing Fan; Ke Yang; Hu-Qiang Yi; Ting Fu; Ming-Xing Xia; Xiao-Bo Xu; Ming-Qiang Zhu


Macromolecular Chemistry and Physics | 2012

Controlled Synthesis and Ti—O Bond Stability of Star-Shaped Biodegradable Polyesters via Titanate-Initiated ROP of Cyclic Esters at Ambient Temperature

Jun-Bing Fan; Feng Long; Matthew P. Aldred; Ya-Jing Li; Zhi-Wu Liang; Ming-Qiang Zhu


Chemical Communications | 2011

Microwave synthesis of zinc sulfite and porous zinc oxide microrods

Ming-Qiang Zhu; Tian Zhao; Mingfeng Zhu; Jun-Bing Fan; Gan-Chao Chen; Zhi-Wu Liang


Journal of Nanoscience and Nanotechnology | 2011

Microwave-controlled facile synthesis of well-defined PbS hexapods.

Gan-Chao Chen; Jun-Bing Fan; Tian Zhao; Xiao-Bo Xu; Ming-Qiang Zhu; Zhiyong Tang


Archive | 2010

Method for manufacturing fluorescence semiconductor quantum dots containing cadmium

Ming-Qiang Zhu; Jinhua Liu; Jun-Bing Fan; Xiao-Bo Xu

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Matthew P. Aldred

Huazhong University of Science and Technology

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