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朱艳

更新日期:2017-02-08

联系方式:  17287515437                      

                     

个人简介:

朱艳,教授。复旦大学物理系凝聚态物理专业博士,加拿大西安大略大学表面中心从事博士后。2011年引进回太阳成集团tyc234cc古天乐太阳成集团tyc234cc官网。2011年云南省引进高层次人才,2018年云南省“兴滇英才支持计划”青年拔尖人才。

研究方向:抗菌材料(纳米金属及其氧化物、有机单体、有机-无机复合物等)、生物植入材料表面改性及功能化、半导体材料与器件等。

主持及参与项目


l 云南省“兴滇英才支持计划”青年拔尖人才专项,硫属化合物相转变中的关键问题研究,50万,2019/01-2024/12,在研,主持

l  太阳成集团tyc234cc古天乐重点团队建设项目,14078237,朱艳学科平台建设经费,2013/01-2017/12,140万元,在建,主持

l 国家自然科学基金地区科学基金项目,61764010,阳离子替位共掺对CZTS能带结构和相转变的协同调控研究,2018/01-2021/12,直接费用39万元,在研,主持

l 国家自然科学基金地区科学基金项目,61865007,面向全息三维显示的氧化石墨烯聚合物全息特性研究,2019/01-2022/12,直接费用40万元,在研,参与

l 云南省应用基础研究计划重点项目2018FA034太赫兹光谱识别与材料分析应用研究,2018/06-2021/05,50万元,在研,参与

l 云南省应用基础研究计划面上项目2018FB101基于数字全息的三维显示技术机理与实验研究,2018/06-2021/05,10万元,在研,参与

l 国家自然科学基金面上项目, 51771084, 太阳能电池正面无铅电极材料界面性质及其电极材料-Si基导电机理研究,2018/01-2021/12,直接费用57万元,在研,参与

l 国家自然科学基金地区科学基金项目,11764003,新型纳米渗透固结型天然大理石表面保护剂研究,2018/01-2021/12,直接费用44万元,在研,参与

l  国家自然科学基金面上项目,61671225,基于太赫兹光谱数据库的光谱识别检索与分析方法研究,2017/01-2020/12,直接费用60万元,已结题

l  国家自然科学基金面上项目,11674136,新型结构原子级精确的石墨烯纳米带制备及其能带特性表征,2017/01-2020/12,直接费用72万元,已结题

l  国家自然科学基金地区科学基金项目,11564002,用界面修饰调控有机太阳能电池中的激子行为,2016/01-2019/12,直接费用47万元,已结题

l  国家人力资源和社会保障部留学人员科技活动择优资助项目,2014年度,热氢轰击诱导形成碳基特种超薄膜的机理与实验研究,2015/01-2017/12,3万元,已结题

l  太阳成集团tyc234cc古天乐太阳成集团tyc234cc官网优秀青年拔尖人才项目,铜铟镓硒薄膜太阳能电池关键技术研究,2015/01-2017/12,30万元,已结题

l  云南省新材料制备与加工重点实验室开放基金(2015,CZTS纳米晶制备研究,2015/12-2016/12,5万元,已结题

l  云南省科技厅青年基金项目,KKSQ201351004,基于载流子输运分析的硅纳米簇太赫兹电磁特性研究,2013/10/15-2016/09/15,6万元,已结题

l  太阳成集团tyc234cc古天乐校人培基金,KKZ3201451015,太赫兹材料指纹识别技术研究,2014/06/15-2016/05/15,3万元,已结题

l  国家自然科学基金青年基金项目,21104028,高分子超薄膜绿色交联技术的实验与理论研究,2012/01-2014/12,24万元,已结题

l  太阳成集团tyc234cc古天乐校企预研基金金川基金项目,金川201211,新型超细镍粉的研发及优化,2012/06-2014/06,5万元,已结题

l  云南省应用基础研究计划(面上自筹)项目,2011FZ015,高分子超薄膜绿色交联技术的实验与理论研究,2011/10-2014/09,5万元,已结题

l  云南省应用基础研究计划项目,2011FZ051,应变和氧空位对SrTcO3电子结构和电子输运性质的影响,2011/10-2014/09,5万元,已结题

 

近三年发表论文


2021

[1]   Yan Zhu, Fang Zhou, Junqiang Hu, De-Quan Yang, Longlai Yang, Edward Sacher; Afacile route to prepare colorless Ag-Cu nanoparticle dispersions with elevated antibacterialeffects; Colloids and Surfaces A:Physicochemical and Engineering Aspects; 626 (2021) 127116SCI收录)

[2]   Guitang Liu, Shuhong Sun, Tao shen, YanZhu*; Preparation of Cu3SnS4 film with single ceramictarget magnetron sputtering for Pt-free counter electrode of Dye-SensitizedSolar Cell; Journal of Materials Science:Materials in Electronics; (2021) 32:17292–17300SCI收录)

[3]   Xiaoli Guan, Kaili Chu, Hongjiang Li, Xingrui Pu, Xiaohan Yu, ShuaizhaoJin, Yan Zhu, Shuhong Sun, JuboPeng, Xiang Liu*; Using spin coating method to prepare near room-temperature TCR of La0.7Ca0.205Sr0.095MnO3films for uncooled infrared bolometers; Journal of Alloys and Compounds; Accepted)(SCI收录)

[4]   ChengXiong Gao, Shuhong Sun, Jinkun Liu, Tao Shen and Yan Zhu; Synthesis of magnetronsputtered AgBiS2 thin films; FunctionalMaterials Letters; (2021) 2150017SCI收录)

[5]   Yan Zhu, Jialiu Liu, Yongmao Hu, De-Quan Yang and Edward Sacher; Dynamicbehaviours and drying processes of water droplets impacting on superhydrophilicsurfaces; Surface Engineering; 2021, (Accepted)SCI收录)

[6]   Y. Zhu, Y. Lu, S.h. Sun, B. Zhou and Y.m. Hu; Phase Selectivity of CopperSulfide: Synthesis and Application;Journal of ElectronicMaterials; Apr 2021, Jan 2021 (Online), 50 (4), 2034-2042SCI收录)

 

2020

[1]     Mengfan Liang, Ziyi Xiong, Yongmao Hu, Yingli Liu, Tao Shen, Shuhong Sunand Y. Zhu*; Surface evolution ofJanus Cu–Ag nanoparticles: Influence of atom arrangements and interfacestructures; Functional Materials Letters;Vol. 13, No. 8 (2020) 2050037 (4 pages) SCI收录)

[2]     Mengfan Liang, Ziyi Xiong, Yongmao Hu, Yingli Liu, Tao Shen, Shuhong Sunand Y. Zhu*; Surface evolution ofCu-Ag bimetallic system: from experiment to molecular dynamics simulation; The Journal of Physical Chemistry C;2020, 124, 21829?21842SCI收录)

[3]     H. Zhang, S.H. Sun, J.C. Liu, F. Hong, Y. Zhu*, B. Zhou, Y.M. Hu; A Study on N-type Bismuth Sulphochloride(BiSCl): Efficient Synthesis and Characterization; Nano; Nano: Brief Reports andReviews; Vol. 15, No. 9 (2020) 2050116 (9 pages)SCI收录)

[4]     Mengfan Liang, Yan Zhu andShuhong Sun; CuS–Cu9S8 nanoparticles as an efficientcatalyst: A facile method via anion controlled; Functional Materials Letters; Vol.13, No. 5 (2020) 2050024 (5 pages)SCI收录)

[5]     Mengfan Liang, Yan Zhu andShuhong Sun; Cu@Ag Core-Shell Nano-particle with Multiple Morphology: A SimpleSurfactant-Free Synthesis and Finite element simulation; Micro & Nano Letters; 2020, Vol. 15, Iss. 6, pp. 396–398 SCI收录)

[6]     J.C. Liu, H. Zhang, S.H. Sun, Y.Zhu*, B. Zhou, Y.M. Hu; Manganese alloying improved electron transfer indye-sensitized solar cells with Cu2Cu1-xMnxSnS4counter electrodes; Journal of Alloys and Compounds; 847 (2020) 156267SCI收录)

[7]     Mengfan Liang, An'ni Yang, YanZhu* and Shuhong Sun; Effects of Nanoparticles' Size and Shape on theThermodynamic Properties of PI/SiO2 Nanocomposites; Nano:Brief Reports and Reviews; Vol. 15, No. 3 (2020) 2050041 (17 pages) SCI收录)

[8]     Junqiang Hu, Longlai Yang, YanZhu*, De-Quan Yang and Edward Sacher, Destabilization of PVA-stabilized AgNPs: color changes at low aqueous concentrations, induced by aggregation andcoalescence, Materials Research Expresss; 7 (2020) 025003SCI收录)

[9]     Ning Liu, Fei Xu, Yan Zhu, YongmaoHu, Guitang Liu, Liang Wu, Kangjing Wu, Shuhong Sun*, Feng Hong*;Synthesis andcharacterization of (Cu1?xAgx)2ZnSnS4nanoparticles with phase transition and bandgap tuning, Journal of Materials Science: Materials in Electronics, 2020, 31: 5760–5768SCI收录)

[10] Yingli Liu, Chen Niu, Zhuo Wang*, Yong Gan, Yan Zhu, Shuhong Sun, Tao Shen*;Machine learning in Materials Genome Initiative: A review; Journal of Materials Science & Technology; 57 (2020) 113–122SCI收录)

[11] Wenjun Cai, Wei Jiang, Ke Xie, YanZhu, Yingli Liu, Tao Shen; Dynamic reputation–based consensus mechanism:Real-time transactions for energy blockchain; International Journal ofDistributed Sensor Networks; 2020, Vol. 16(3): 1-13SCI收录)

[12] Mengfan Liang, Qiang Lei, Shuhong Sun, Yan Zhu*; Plasmonic responses of Cu-Ag bimetallic system: influenceof distinctiveness and arrangements; OpticalMaterials; 100(2020) 109855SCI收录)

 

2019

[1]     J C Liu, L K Wei, S H Sun, Y Zhuand Y M Hu*; An effective approach to bandgap tuning for Cu3SnS4by manganese doping; Materials ResearchExpress; 6 (2019) 125038SCI收录)

[2]     Z. E. Zhao, S. H. Sun, Y. M. Hu, Y.Zhu*; Robust superamphiphobic aluminum surfaces:fabrication and investigation; Journal of Coatings Technology and Research; (2019) 16: 1707-1714SCI收录)

[3]     Yan Zhu, Yin He, Zhenhua Li*, Jifan Zhang, Tao Shen, Yiqi Chen,Dequan Yang* and Edward Sacher; Synthesis of amorphous SiO2nanowires by one-step low temperature hydrothermal process; Materials Research Express;2019, 6(11), 115202,SCI收录)

[4]     Yongmao Hu, Ruheng Li, Xueqing Zhang, Yan ZhuHeng-Yong Nie*; Aluminium films roughened by hot watertreatment and derivatized by fluoroalkyl phosphonic acid: wettability studies; Surface Engineering;http://orcid.org/0000-0002-8287-5171, Published online: 28 Jul 2019SCI收录)

[5]     Tao Shen*, Guitang Liu, Leikai Wei, Yan Zhu,Shuhong Sun* ; Construction of ZnS nanoparticles@ porous Cu3SnS4P-N heterojunction for simulated natural sunlight degradation of methyl blue; Materials Letters;2019 (253): 446–449SCI收录)

 

 

专利(授权)


1.        沈韬, 柴鲜花,朱艳, 甘国友,青红梅,一种铜锌锡硫薄膜的制备方法,2020.04.07,中国,ZL201810202954.9

2.        沈韬,韦雷凯,朱艳,孙淑红,一种基于磁控溅射法的CZTS叠合吸收层及其制备方法,2020.04.07,中国,ZL201711306144.X             

3.        韦雷凯, 沈韬,朱艳,一种绑定单靶溅射制备Cu3SnS4吸收层的方法,2020.07.31,中国,ZL201810958677.4  

4.        沈韬,李继强,朱艳,孙淑红,一种纤锌矿CMTS纳米晶的制备方法,2020.07.31,中国,ZL201711380289.4

5.        沈韬,李继强,朱艳,孙淑红,一种增强太赫兹波的ZnO纳米阵列的制备方法,2019.09.27,中国,ZL201710408066.8

6.   朱艳,贺胤,黎振华,张际帆,沈韬,一种二氧化硅纳米线的制备方法,2019.01.04,中国,ZL201610596942.X

7.   朱艳,王力,黎振华,贺胤,一种铝及铝合金超疏水表面的制备方法,2019.01.04,中国,ZL 201610596941.5

8.   沈韬,陈怡琦,朱艳,一种银/二氧化硅纳米线复合材料的制备方法,2018.11.09,中国,ZL 201610811301.1

9.   王力,朱艳,黎振华,沈韬,一种低碳钢超疏水表面的制备方法,2018.08.31,中国,ZL 201610017219.1

10.    甘国友,邹屏翰,沈韬,朱艳,一种纤锌矿Cu2ZnSnS4纳米晶的大规模制备方法,2018.03.06,中国,ZL201610821814.0

11.    朱艳,青红梅,沈韬,黎振华,胡永茂,一种微纳复合结构纤锌矿铜锌锡硫微粒的制备方法,2017.09.22,中国,ZL201610597142.X


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