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[专家学者] 广东工业大学轻工化工学院刘金成

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发表于 2018-8-16 16:03:48 | 只看该作者 回帖奖励 |倒序浏览 |阅读模式

刘金成,博士,广东工业大学副教授,硕士生导师,广东工业大学青年百人A类引进人才。多年来一直从事无机纳米材料的合成,表面修饰以及催化、能源和环境应用,具备丰富的纳米合成及表面修饰的理论知识以及纳米晶环境应用方面的知识,对此领域的最新发展方向和前沿有清楚的了解和认识。自2008年以来,在纳米合成及其能源环境应用领域共发表SCI收录论文42篇;其中第一作者15篇,并列1作者1篇以及2作者通讯作者10篇,ESI高引用论文3篇,总SCI引用次数超过1400次,H指数20.


刘金成副教授

出生年月:1975年11月

传真:020-39322237

电子邮件:jcliu@gdut.edu.cn

243562709@qq.com

电话:18218018581


教育经历:

2004.9~ 2008.6,博士生,华南理工大学材料学院,聚合物光电材料和器件研究所,导师曹镛院士。

1997.9~ 2000.6,硕士生,中山大学化学和化学工程学院,高分子研究所,导师林尚安院士。

1993.9~ 1997.7,本科生,青岛科技大学橡胶工程系.

工作经历:

2014.10~目前,广东工业大学轻工化工学院,副教授。

2013.6- 2014.10,新加坡南洋理工大学环境工程学院环境化学研究所,博士后研究员

2012.6~2013. 5,博士后,马赛埃克斯一大,法国国家科学研究院,马赛跨学科纳米科学中心,博士后

2012.2~2012.6,博士后,捷克奥洛莫乌茨帕拉茨基大学物理化学系,博士后

2009.6~ 2012.1,博士后研究员,新加坡南洋理工大学土木与环境工程学院

2008.9~ 2009.5,博士后,韩国水原亚洲大学物理系.

2001.3~ 2003.12,深圳国家863材料表面研究开发中心,铝,镁,钛的阳极微弧氧化。

研究方向:

1. 高性能光催化材料的设计、制备及其光催化降解,杀菌,产氢和二氧化碳还原的应用研究;

2. 高性能无机分离膜的设计组装及其传质机理,抗污染机理和水纯化研究;

3. 高性能无机二氧化钛电子传输层和高性能三氧化钨空穴传输层的制备,电荷迁移及其有机太阳能电池应用研究。

在研科研项目(主持):

1. 2016.1.1-2016.12.31:国家自然基金应急管理项目,基于超细三氧化钨纳米线的无机纳滤膜的研究,10万,主持。

2. 2015.01.01-2016.12.31:聚合物发光国家重点实验室开放基金,溶剂基铌掺杂二氧化钛薄膜的制备及其聚合物光电器件电子传输,5万,主持。

3. 2014.10-2017.10:石墨烯-无机纳米复合纳滤膜的研究,青年百人启动项目,20万,主持。

已授权或申请发明专利:

ZL01105845.3,林尚安,祝方明,周文乐,刘金成,沈志刚,黎华明,间规聚苯乙烯/聚苯乙烯复合材料。

孙德来;刘金成;张彤。(2011) "交联无机纳米纤维膜" Ref. No. TD/192/11/US,提交美国专利申请.

主要研究论文如下:

[1] Jincheng Liu*, Hongwei Bai, Yinjie Wang, Zhaoyang Liu, Xiwang Zhang, and Darren Delai Sun*, Self-assembling TiO2 nanorods on large graphene oxide sheets at a two-phase interface and its anti-recombination in photocatalytic application, Adv. Funct.Mater. 2010, 20, 4075-4081. (引用416次)

[2] Jincheng Liu1,3, Olivier Margeat 1*, Walid Dachraoui 1, Xianjie Liu 2, Mats Fahlman 2 and Jorg Ackermann. Gram-Scale Synthesis of Ultrathin Tungsten Oxide Nanowires and their Aspect Ratio-Dependent Photocatalytic Activity. Adv. Funct. Mater. 2014.24,6029-37.

[3] Jincheng Liu, Huiseong Jeong, Jinzhang Liu, Kyungmoon Lee, Ji-YongPark, Y.H. Ahn,

Soonil Lee*,Reductionof functionalized graphite oxides by trioctylphosphine in non-polarorganic solvents, Carbon, 2010; 48 ; 2282-9.

[4] Jincheng Liu*, LeiLiu, Hongwei Bai, Yinjie Wang, Darren Sun*, Gram-scale

production of graphene oxide-TiO2nanorod composites: towards high-activity

photocatalytic materials, Appl.Catal. B: Environ, 2011, 76, 76-82.

[5]PengGao,Jincheng Liu*,SiewxiangLee, Tong Zhang, Darren Sun*,Highquality

GrapheneOxide-CdS-Pt nanocomposites for efficientphotocatalytichydrogenevolution

J. Mater. Chem., 2012, 22(5),2292.


[6] Jincheng Liua,b*,Shiping Xua, Lei Liua, Darren Delai Suna,TheSize and Dispersion

effect of Modified Graphene Oxide sheets on thePhotocatalytic H2generation activity of

TiO2Nanorods, Carbon, 2013, 60, 445-452.

[7]Jincheng Liu*, Shuyan Yu, Shuyan Yu, Xiaoli Yan*, Oxygen Vacancy-Enhanced

Visible Light-drivenPhotocatalytic Activity of TiO2Sphere-W18O49Nanowire

Bundle Heterojunction. Appl. Catal. A:General, 2015, 500, 30-39.

[8] Shuyan Yu,Jincheng Liu*,Zhongting Hu, TeikthyeLim, Xiaoli Yan*, Facile

room-temperaturesynthesis of carboxylated graphene oxide-copper sulfide nanocompositewith highphotodegradation and disinfection activities under solar light irradiation,

ScientificReports, 2015,5, 16369.

[9] Jincheng Liu*,Wenyu Zhu, Shuyan Yu, Xiaoli Yan*. Three dimensional carbogenic

dots/TiO2nanoheterojunctions with enhancedvisible light-driven photocatalytic

activity. Carbon 2014,79,369-379.

[10] Peng Gao1,Jincheng Liu1, Darren Sun,WenjernNg.Grapheneoxide-CdS composite

with high photocatalytic degradation and disinfectionactivities under visible light

irradiation.Journal of Hazardous Materials, 2013, 210-211,412-420.

[11]Peng Gao,Jincheng Liu*,TongZhang, Darren Sun*, Wenjern Ng, Hierarchical

TiO2/CdS“spindle-like” Composite with High Photodegradation and Antibacterial

Capability underVisibleLight Irradiation, J. Hazard. Mater., 2012, 229-230, 209-216.

[12][url=]Lei[/url]Liu,JinchengLiu*,DarrenSun*,[url=]GrapheneOxide Enwrapped Ag3PO4[/url]Composite:

Towards a Highly Efficient and StableVisible-Light-Induced Photocatalyst for Water

Purification,Catalysis Science & Technology,2012, 2,2525-2532.(IF=3.75)


[13]Jincheng Liu*,YinjieWang, Darren Sun*,Enhancingthe performance of dye-sensitizedsolarcells by benzoic acid modified TiO2 nanorod electrode,[url=]Renew. Ener[/url]g, 2012, 1, 214.

[14] Lei[url=]Liu,[/url]JinchengLiu*,Yinjie Wang,Xiaoli Yan,Darren Sun*,Facile synthesis of

monodispersedsilver nanoparticles on graphene oxide sheets with enhanced

antibacterialactivity,New J. Chem. 2011, 35,1418-1423.

[15] Tong Zhang,Jincheng Liu*,Darren Sun*,A Novel Strategyto Fabricate InorganicNanofibrous Membranes for Water Treatment: Use of FunctionalizedGraphene Oxide as a Cross LinkerRSC Advances, 2012, 2, 5134.

[16] YinjieWang,Jincheng Liu*, Lei Liu, Darren Sun*, High-quality reducedgraphene

oxide-nanocrystallineplatinum hybrid materials prepared by simultaneous co-reduction

of graphene oxideand chloroplatinic acid, Nanoscale Res. Lett. 2011, 6, 241.

[17] JinchengLiu*,Yinjie Wang, Darren Sun*,Oleic acid-assisted exfoliated few layer

graphenefilms as counter electrode in dye-sensitized solar cell, Journal of alloys and

compounds,2012,545,99-104.

[18] JinchengLiu*,Yinjie Wang, Darren Sun,Enhanced performance of hybrid solar

cells using carboxylicacid-functionalized graphene oxide supported TiO2nanorod

composites,Materials letters, 2013,95,178-181.

[19] Jincheng Liu*,Yinjie Wang, Shiping Xu, Darren Delai Sun*,Synthesis of graphene

soluble in organic solvents bysimultaneous ether-functionalization with octadecane

groups and reduction,Mater. Lett. 2010; 64 (20): 2236-9.

[20] Jincheng Liu*,Hong Tao, Yong Cao, Jorg Ackermann,Multi-branchedCdSe

nanocrystals stabilized by weakligand for hybrid solar cell application, J. Nanosci.

Nanotechnology, 2014,14(4), 2836-2841(6).

[21] YinjieWang,Jincheng Liu*, Lei Liu, Tong Zhang, Darren D Sun*, Room

TemperatureReduction of Graphene Oxide by Formic Acid Catalyzed by Platinum

Nanoparticles,J. Nanosci. Nanotechno., 2013,13,1-7.

[22]YinjieWang,Jincheng Liu*,LeiLiu,Darren Sun*,[url=]Enhancing Stability and[/url]

Photocatalytic Activity ofZnONanoparticles by Surface Modification of Graphene Oxide,

J. Nanosci. Nanotechno., 2012, 12, 1-7.


[23] Jincheng Liu, WengliWang, Huangzhong Yu, ZhonglianWu, Junbiao Peng, Yong

Cao*,Surface ligand effects inMEH-PPV/TiO2hybrid solar cells, sol. Energy Mater.

Sol. Cells, 2008; 92; 1403-9.

[24] Jincheng Liu, Huangzhong Yu,ZhonglianWu, Wengli Wang, Junbiao Peng, Yong

Cao*,Size-tunablenear-infrared PbS nanoparticles synthesized fromlead carboxylate

and sulfur with oleylamine as stabilizer,Nanotechnology, 2008; 19; 345602.

[25] Jincheng Liu,Huangzhong Yu, Donghuan Qin,Junbiao Peng, Yong Cao*, Shape-controlledSynthesis of ZnS Nanocrystals by a Chemical Precipitation, Acta

Chim. Sinica, 2008, 66 (8): 1003.


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沙发
发表于 2019-9-9 08:53:04 | 只看该作者
2019自然科学基金面上项目-MoO3-Ag-碳点催化剂的可控制备及其光热协同增强环己烷氧化活性和选择性研究
批准号        21978054        学科分类        原料及中间体的绿色制造 ( B080801 )
项目负责人        刘金成        负责人职称                依托单位        广东工业大学
资助金额        65.00万元        项目类别        面上项目       
研究期限        2019 年 09 月 09 日 至2019 年 09 月 09 日

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