袁彩雷 教授
发布时间:2017-03-28浏览次数:2417

一、个人简介:

袁彩雷,新加坡国立大学博士,现为beplay官方网站官网教授,博士生导师。任江西省先进传感器件和系统集成“2011协同创新中心、江西省微纳材料与传感器件重点实验室和江西省微纳材料与传感工程实验室副主任。

长期从事纳米材料和器件的研究工作,曾先后在新加坡国立大学、新加坡南洋理工大学和澳大利亚国立大学从事研究工作。入选澳大利亚博士后、江西省杰出青年人才资助计划、江西省百千万人才工程。担任国际著名期刊《Journal of Nanoscience Letters》、《Science Letters Journal》、《ScienceJetAssociate Editor担任Nanoscale》、《ACS Applied Materials & Interfaces》、《Applied Physics Letters》等国际著名期刊审稿人长期担任国家自然科学基金通讯评审专家。担任教育部学位与beplay体育官网app下载发展中心学位论文通讯评议专家。

SCI收录的国际主要相关领域学术期刊如NanoscaleJournal of Materials Chemistry CJournal of Physical Chemistry CApplied Physics Letters发表论文90余篇(SCI二区及以上论文50多篇),单篇论文最高引用次数100多次(第一作者),国际会议口头报告10多次。主持国家自然科学基金四项,主持澳大利亚博士后创新基金一项,主持省级项目多项。研究成果先后获江西省自然科学奖三等奖(排名第一)、江西省高等学校科技成果奖二等奖(排名第一)、江西省物理学优秀学术论文一等奖(排名第一)。申请12项国家发明专利,目前已授权发明专利4

二、联系方式:

Emial: clyuan@jxnu.edu.cn

三、研究方向:

1、二维类石墨烯材料与器件

2、复合零维纳米颗粒与器件

四、近三年(2014-2017)发表论文:

1.Strain engineered band structure and optical properties of confined GaAs quantum dots

C. L. Yuan*, Y. X. Mei, A. J. Hong, T. Yu, Y. Yang, F. Y. Zeng, K. Xu, Q. L. Li, X. F. Luo*, J. He, W. Lei

J. Phys. Chem. C,121, 5800 (2017)

2.Fabrication of novel flower-like Co3O4structures assembled by single-crystalline porous nanosheets for enhanced xylene sensing properties

K. Xu*, L. Yang, J. P. Zou, Y. Yang, Q. L. Li, Y. H. Qu, J. R. Ye,C. L. Yuan*

J. Alloy. Compd., 706, 116 (2017)

3.Single-crystalline porous nanosheets assembled hierarchical Co3O4microspheres for enhanced gas-sensing properties to trace xylene

K. Xu*, J. P. Zou, S. Q. Tian, Y. Yang, F. Y. Zeng, T. Yu, Y. T. Zhang, X. M. Jie,C. L. Yuan

Sensor Actuat. B-Chem., 246, 68 (2017)

4.Tuning strain and photoluminescence of confined Au nanoparticles by hydrogen passivation

C. L. Yuan*, Y. X. Mei, T. Yu, Y. Yang, Q. L. li, A. J. Hong, K. Xu, X. F. Luo*, J. He, W. Lei

RSC Adv.,7, 6875 (2017).

5.A new approach for fabricating Au-Ag alloy nanoparticles confined in Al2O3matrix

C. L. Yuan*, W. Y. Wei, Y. X. Mei, X. F. Luo*, W. Lei

Mater. Lett.,190, 248 (2017).

6.Anatase TiO2hierarchical microspheres consisting of truncated nanothorns and their structurally enhanced gas sensing performance

Y. Yang*, J. X. Hu, Y. Liang*, J. P. Zou, K. Xu, R. J. Hu, Z. D. Zou, Q. Yuan, Q. Q. Chen, Y. Lu, T. Yu,C. L. Yuan*

J. Alloy. Compd.,694, 292 (2017)

7.Controlled vapour-phase deposition synthesis and growth mechanism of Bi2Te3nanostructures

W. Lei, I. Madni, Y. L. Ren,C. L. Yuan, G. Q. Luo, L. Faraone

Appl. Phys. Lett.,109, 083106 (2016)

8.Strain-engineered photoluminescence of confined Ag nanocrystals

X. You,C. L. Yuan*, Y. X. Mei, W. Y. Wei, T. Yu, X. F. Luo*

J. Alloy. Compd.,688, 463 (2016)

9.Strain distribution of confined Ge/GeO2core/shell nanoparticles engineered by growth environments

W. Y. Wei,C. L. Yuan*, X. F. Luo*, T. Yu, G. P. Wang

Chem. Phys. Lett.,646, 91 (2016)

10.Morphology evolution of MoS2: From monodisperse nanoparticles to self-assembled nanobelts

T. Yu, X. F. Luo*, S. M. Han, Y. J. Cao,C. L. Yuan*, Y. Yang, Q. L. Li

Chem. Phys. Lett.,646, 1 (2016)

11.Enhanced Gas-Sensing Properties of the Hierarchical TiO2Hollow Microspheres with Exposed High-Energy {001} Crystal Facets

Y. Yang*, Y. Liang, G. Z. Wang, L. L. Liu,C. L. Yuan, T. Yu, Q. L. Li, F. Y. Zeng, G. Gu*

ACS Appl. Mater. Inter.,7, 24902 (2015)

12.Monolayer-by-monolayer stacked pyramid-like MoS2nanodots on monolayer MoS2flakes with enhanced photoluminescence

C. L. Yuan*, Y. J. Cao, X. F. Luo*, T. Yu, Z. P. Huang, B. Xu, Y. Yang, Q. L. Li, G. Gu, W. Lei

Nanoscale,7, 17468 (2015)

13.Matrix-dependent strain distributions of Au and Ag nanoparticles in metal-oxide-semiconductor based nonvolatile memory device

H. H. Huang, Y. Zhang, W. Y. Wei, T. Yu*, X. F. Luo*,C. L. Yuan*

Nanomater. Nanotechno.,5, 27 (2015)

14.Enhanced photocatalytic performance of Ag decorated hierarchical micro/nanostructured TiO2microspheres

Y. Yang*, G. Z. Wang, Y. Liang,C. L. Yuan*, T. Yu, Q. L. Li, Q. Li

J. Alloy. Compd.,652, 386 (2015)

15.Morphology evolution of MoS2nanorods grown by chemical vapor deposition

S. M. Han, X. F. Luo, Y. J. Cao,C. L. Yuan*, Y. Yang, Q. L. Li, T. Yu*, S. L. Ye

J. Cryst. Growth,430, 1 (2015)

16.Horizontal growth of MoS2nanowires by chemical vapour deposition

S. M. Han,C. L. Yuan*, X. F. Luo*, Y. J. Cao, T. Yu, Y. Yang, Q. L. Li, S. L. Ye

RSC Adv.,5, 68283 (2015)

17.Morphology engineering of monolayer MoS2by adjusting chemical environment during growth

Y. J. Cao, X. F. Luo*,C. L. Yuan*, S. M. Han, T. Yu, Y. Yang, Q. L. Li

Physica E: Low-dimensional Systems and Nanostructures,74,292 (2015)

18.Influences of carrier gas flow rate on the morphologies of MoS2flakes

Y. J. Cao, X. F. Luo, S. M. Han,C. L. Yuan*, Y. Yang, Q. L. Li, T. Yu*, S. L. Ye

Chem. Phys. Lett.,631-632, 30 (2015)

19.Effects of oxygen partial pressure on the photoluminescence properties of Ge nanoparticles

Y. Zhang, H. H. Huang, S. M. Han, Y. J. Cao, X. F. Luo,C. L. Yuan*

ScienceJet,4, 157 (2015)

20.Shell thickness-dependent strain distributions of confined Au/Ag and Ag/Au core-shell nanoparticles

F. Liu, H. H. Huang, Y. Zhang, T. Yu,C. L. Yuan, S. L. Ye

Adv. Cond. Matter. Phys.,2015, 58356 (2015)

21.Strain distribution of confined Au/Ag and Ag/Au nanoparticles

H. H. Huang, Y. Zhang, X. S. Liu, X. F. Luo,C. L. Yuan*, S. L. Ye

Chin. Phys.B,24, 047803 (2015)

22.Influences of strain distribution on morphology evolution of Ge/GeO2core/shell nanoparticle confined in ultrathin Al2O3thin film by surface oxidation

Y. Zhang, H. H. Huang, X. S. Liu, X. F. Luo,C. L. Yuan*, S. L. Ye

Chin. Phys.B,24, 037701 (2015)

23.Strain-gradient facilitated formation of confined Ge/GeO2nanoparticles with cracked shell and enhanced two-photon absorption

C. L. Yuan*, Y. Zhang, J. He, S. L. Ye, W. Lei, X. S. Liu, G. Gu

J. Mater. Chem. C,2, 8768(2014)

24.Strain distribution of metal nanoparticles embedded in Lu2O3film

X. S. Liu,C. L. Yuan*, G. Q. Liu, G. L. Fu, X. F. Luo

Acta Photonica Sinica,430616004 (2014)

25.Strained GaAs nanocrystals for nonvolatile memory applications

Z. X. Jiang,C. L. Yuan*, S. L. Ye

RSC Adv.,4, 19584 (2014)

26.Morphology-engineered strain transformation in Ge/GeO2core/shell nanoparticles

Z. X. Jiang, Y. Zhang, H. H. Huang, X. S. Liu,C. L. Yuan*, G. Gu, S. L. Ye

Physica E: Low-dimensional Systems and Nanostructures,60, 100 (2014)

27.Thickness-dependent strain effect on the deformation of the graphene-encapsulated Au nanoparticles

S. L. Ye*, H. H. Huang,C. L. Yuan, F. Liu, M. Zhai, X. Z. Shi, C. Qi, G. F Wang

J. Nanomat.,2014, 989672 (2014)

28.Strain distribution of Au and Ag nanoparticles embedded in Al2O3thin film

H. H. Huang, Y. Zhang,C. L. Yuan*, G. Gu, S. L. Ye

J. Nanomat.,2014, 471718 (2014)

29.Strain-induced matrix-dependent deformation of GaAs nanoparticles

C. L. Yuan*, Z. X. Jiang, S. L. Ye

Nanoscale,6,1119 (2014)

Baidu
map