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蒋绪川

发布日期:2020年07月29日 20:03    作者:     来源:     点击:


 

个人信息

姓名

蒋绪川

性别

职称

教授

手机号

13615411000

邮箱

Ism_jiangxc@ujn.edu.cn;

ccjiang999@126.com

教育背景(从大学本科起)

2001博士 中国科学技术大学

1999硕士 山东大学

1991学士 山东大学

工作经历(从大学毕业起)

2018.01-济南大学教授,智能材料与工程研究院院长

2015.01-澳大利亚蒙纳士大学教授(兼)

2013-2015澳大利亚新南威尔士大学副教授

2009-2013澳大利亚新南威尔士大学FutureFellow

2005-2009澳大利亚新南威尔士大学副研究员

2004-2005法国巴黎大学(VI)助理研究员

2002-2003美国华盛顿大学博士后研究员

1991-1999山东大学自然科学学报编辑

主要研究方向

智能材料:光、热、电、磁等外界刺激响应型无机功能材料

界面反应控制材料:催化、传感、超浸润-超疏水仿生材料

化工分离与提纯:萃取分析与纯化

智能玻璃:隔热节能玻璃的工程化

主持和承担科研项目

1. Development and application of WO3-Mica Multifunctional Nanocomposites (ARC LP170100888, 2018-20), 3.5M;

2. Development of Metal-Titania Core-Shell Nanostructures for Photocatalysis (ARC DP160104456, 2016-18),1.3M

3. Development and Application of VO2-based Advanced Nanomaterials for Smart Window Coatings (ARC LP140100786, 2014-17), 7M

4. Computational Particle Science and Technology, (IH1401000352015-20), 2M

5. Synthesis and Fundamental Understanding of Low-Dimensional Metal Oxide Nanoparticles for Gas Sensing Application (FT0990942, 2009-13), 3.5M

6. Experimental and Theoretical Studies of Vanadium Oxide Nanostructures and Their Functional Properties (ARC DP1096185, 2010-12), 5M

7. Function-driven Synthesis and Assembly of Two-dimensional Metal Nanostructures (ARC DP0878641, 2008-10) 200000

8. A Comprehensive Magneto-Thermophysical Property Measurement System for the Development of Advanced Materials, Energy and Biomedical Technologies (ARC LE110100183, 2011), 4.2M

9. 稀土转光材料的制备、发光机制及农膜应用。济南市农业农村局项目(2024-25),40

10. 稀土发光材料的设计、合成及其农业领域应用,江西省工信厅(2024-25200

教学情况

培养博士毕业20人,硕士毕业28人;

团队现有博士7人,硕士18人;

教授课程:Nanotechnology and Materials (I & II) Thermodynamics ;博士生专业英语

奖励与荣誉

国家高层次人才 2017-)

江苏省“双创人才”(2017-)

江西省“双千人才” (2018-)

江西省宜春市政府顾问 2018-)

享受特殊津贴专家 2020-)

澳大利亚科学基金委Future Fellow (2009)

澳大利亚科学基金委 QEIIFellow(2009)

代表性论文(最多10篇)

共发表SCI论文及专著章节200余篇,他引次数超过10000次,H-index58

1 X. C. Jiang; Herricks, T. and Xia, Y. Monodispersed Spherical Colloids of Titania: Synthesis, Characterization, and Crystallization.  Adv. Mater.2003, 15, 1205-1209. (cited 387)

2 X. C. Jiang; Mayers, B.; Herricks, T. and Xia, Y. Se@CdSeNanocables and CdSe Nanotube Can Be Directly Synthesized by Reacting Cadmium Salts with Se Nanowires. Adv. Mater.2003, 15, 1740-1743.

3 Mayers, B.; X. C. Jiang; Sunderland, D.; Cattle, B. and Xia, Y. Hollow Nanostructures of Platinum with Controllable Dimensions Can Be Synthesized by Templating against Selenium Nanowires and Colloids. J. Am. Chem. Soc.2003, 125, 13364-13365.

4 Wang, Y.; X. C. Jiang and Xia, Y. A Solution-Phase, Precursor Route to Poly-crystalline SnO2 Nanowires That Can Be Used for Gas Sensing under Ambient Conditions. J. Am. Chem. Soc.2003, 125, 16176-16177.  (Cited 1170 times)

5 S.F. Wang, M.S. Liu, L.B. Kong, Y. Long, X.C. Jiang,* A.B. Yu. Recent Progress in VO2 Smart Coatings: Strategies to Improve the Thermochromics Properties. Progress in Materials Science. 2016, 81,1-54.

6 M. S. Liu, B. Su, Y. V. Kaneti, Z. Chen, Y. Tang, Y. Yuan, Y. F. Gao, X. C. Jiang,* A. B. Yu and L. Jiang. Dual-Phase Transformation: Spontaneous Self-Template Surface-Patterning Strategy for Ultra-Transparent VO2 Solar Modulation Coatings. ACS Nano, 2017, 11, 407-415.(DOI 10.1021/acsnano.6b06152)

7 G.Z. Chen, S. Wang, R.M. Hu, J. Ren, Y. Lv, L. Song, H. Zhao, X.C. Jiang, and D.W. Gao. Surface hydrophobization of zeolite enables mass transfer matching in gas-liquid-solid three-phase hydrogenation under ambient pressure. Nat. Commun., 2024, 15, 2076

8 C. Fang, L. Huang, X.C. Jiang, H. Liu, R.M. Hu, X. Li, J. Yu, W.J. Zhou. Oxygen-Pinned Ag1In Single-Atom Alloy for Efficient Electroreduction CO2 to Formate" Advanced Energy Materials. 2024, 2400813.

9 M. Liu, C.X. Yang, W. Liu, X. Zhou, S. Liu, Q. You, X.C. Jiang, Synthesis of Bi3+ and Eu3+ co-doped Na4CaSi3O9 blue-red light tunable emission phosphors for inducing plant growth, Ceramics International, 2024, 50, 9058-9069.

10 H. Li, X.J. Zhang, J. Peng, S.J. Yang, R.M. Hu, X.C. Jiang, Donor–acceptor cross-conjugated phenazine macrocycle with large Stokes shift for “turn-on” sensing transition metal ions, Journal of Materials Chemistry C, 2024, 12, 10127-10134.

代表专利(最多10项)

1. Metallic Nanostructures, Formation and Shape Selection. USA, No. US 10/732,910 (2003).

2. 一种二氧化钒纳米分体分散液和涂层的制备方法. 201811407165.5

3. 一种金红石相二氧化钒纳米粉体的制备方法.201811407204.1

4. 一种固相法大量制备金红石相二氧化钒纳米粉体的方法.201811407373.5

5. 一种金红石相二氧化钒超细纳米粉体的制备方法.201811407464.9

6. 聚丙烯酸酯聚合物@二氧化钒微胶囊及制备方法和用途,202210027077.2,授权,2024.4.12

7. 一种硅酸钙钠铕荧光粉及其制备方法与应用,202310811978.5,授权,2024.4.5

8. 一种α,α,α-三联吡啶基稀土有机红光转光剂及其制备方法与应用,202311579463.3,授权,2024.1.26

9. A diketopyrrolopyrrole based red light conversion agent material. 国际专利(南非),授权,2023.08.11,南非专利申请第2023/00481.

10. 一种VO2@Mg1.5VO4多孔薄膜及其制备方法和用途,202210750984.X授权2023.10.20

其他

· Associate Editor/Editorial Board Member of 3 journals: (1) Inter. J. of Nano Study and Technology; (2) Nanomaterials.; and (3) Sensors

· International conference organizer/Session Chair

· Delivered over 30 plenary, Keynote and invited talks in national and international conferences

· OZ reader for ARC and NHMRC grants and Assessor for China NSF grants

· Examiner for PhD thesis from different countries (Aus. France, Singapore and China,)

· Referee for tens of journals (Adv. Mater., Small, ACS Nano, Chem. Mater. Nanoscale, Langmuir)

Contact information

Name

Xuchuan Jiang

Gender

Male

Title

Professor, Dean

Telephone

13615411000

Email

Ism_jiangxc@ujn.edu.cn;

ccjiang999@126.com

Education

Background

2001 PhD    University of Science & Technology of China

1999 Master  Shandong University

1991 Bachelor Shandong University

Work Experience

2018.01- Professor, University of Jinan, and Dean of the Institute of Smart Materials & Engineering

2015.01-  Professor, Monash University, Australia

2013-2015 Associate Professor, Monash University, Australia

2009-2013 ARC Future Fellow, University of New South Wales, Australia

2005-2009 Research Fellow, University of New South Wales, Australia

2004-2005 Assistant Fellow, University of Paris(VI), France

2002-2003 Postdoctoral Fellow, University of Washington, USA

1991-1999 Editor, Shand University Journal

Research Areas

Smart Materials: Functional materials reflected with stimulus by light, thermal, electricity and magnetic

Interface reactioncatalysis, gas sensors, and superhydrophilic/hydrophobic materials

Chemical extraction and separationExtraction and purification of rare earth ions

Smart windowssmart powders, inks and coatings

Research Projects

1. Development and application of WO3-Mica Multifunctional Nanocomposites (ARC LP170100888, 2018-20), 3.5M;

2. Development of Metal-Titania Core-Shell Nanostructures for Photocatalysis (ARC DP160104456, 2016-18),1.3M

3. Development and Application of VO2-based Advanced Nanomaterials for Smart Window Coatings (ARC LP140100786, 2014-17), 7M

4. Computational Particle Science and Technology, (IH1401000352015-20), 2M

5. Synthesis and Fundamental Understanding of Low-Dimensional Metal Oxide Nanoparticles for Gas Sensing Application (FT0990942, 2009-13), 3.5M

6. Experimental and Theoretical Studies of Vanadium Oxide Nanostructures and Their Functional Properties (ARC DP1096185, 2010-12), 5M

7. Function-driven Synthesis and Assembly of Two-dimensional Metal Nanostructures (ARC DP0878641, 2008-10) 200000

8. A Comprehensive Magneto-Thermophysical Property Measurement System for the Development of Advanced Materials, Energy and Biomedical Technologies (ARC LE110100183, 2011), 4.2M

9. Synthesis of Rare light-emission materials with unique light conversion for thin film application. Jinan Government Project2024-25),¥40W.

10. Design and preparation of Rare light-emission materials with unique light conversion effectiveness for agriculture applications2024-25)¥200W

Teachings

Graduated PhD 20 and Master 28

Currently supervise PhD students 7 and Master students 18

CoursesNanotechnology and Materials (I & II) Thermodynamics

Awards and Honours

National state specialized Talent Expert2016-

Creative and Productive Talent of Jiangsu2017-

Double Thousands Talent of Jiangxi2018-

Government consulate of Yichun Jiangxi2018-

Special allowance granted expert2020-

Australian ARC Future Fellow (2009)

AustralianARC QE II Fellow 2009

Representative Publications

Total publications over 200 with citations over 10000 & H-index 58.

1 X. C. Jiang; Herricks, T. and Xia, Y. Monodispersed Spherical Colloids of Titania: Synthesis, Characterization, and Crystallization.  Adv. Mater.2003, 15, 1205-1209. (cited 387)

2 X. C. Jiang; Mayers, B.; Herricks, T. and Xia, Y. Se@CdSeNanocables and CdSe Nanotube Can Be Directly Synthesized by Reacting Cadmium Salts with Se Nanowires. Adv. Mater.2003, 15, 1740-1743.

3 Mayers, B.; X. C. Jiang; Sunderland, D.; Cattle, B. and Xia, Y. Hollow Nanostructures of Platinum with Controllable Dimensions Can Be Synthesized by Templating against Selenium Nanowires and Colloids. J. Am. Chem. Soc.2003, 125, 13364-13365.

4 Wang, Y.; X. C. Jiang and Xia, Y. A Solution-Phase, Precursor Route to Poly-crystalline SnO2 Nanowires That Can Be Used for Gas Sensing under Ambient Conditions. J. Am. Chem. Soc.2003, 125, 16176-16177.  (Cited 1170 times)

5 C. Y. Chen, B.H.R. Suryanto, C. Zhao, X. C. Jiang* and A. B. Yu. Direct Hydrothermal Synthesis of Carbonaceous Silver Nanocables for Electrocatalytic Applications. Small, 2015, 11, 3557-3567 (DOI: 10.1002/smll.201401854).

6 S.F. Wang, M.S. Liu, L.B. Kong, Y. Long, X.C. Jiang, * A.B. Yu. Recent Progress in VO2 Smart Coatings: Strategies to Improve the Thermochromics Properties. Progress in Materials Science. 2016, 81,1-54.

7 G.Z. Chen, S. Wang, R.M. Hu, J. Ren, Y. Lv, L. Song, H. Zhao, X.C. Jiang, and D.W. Gao. Surface hydrophobization of zeolite enables mass transfer matching in gas-liquid-solid three-phase hydrogenation under ambient pressure. Nat. Commun., 2024, 15, 2076

8 C. Fang, L. Huang, X.C. Jiang, H. Liu, R.M. Hu, X. Li, J. Yu, W.J. Zhou. Oxygen-Pinned Ag1In Single-Atom Alloy for Efficient Electroreduction CO2 to Formate" Advanced Energy Materials. 2024, 2400813.

9 M. Liu, C.X. Yang, W. Liu, X. Zhou, S. Liu, Q. You, X.C. Jiang, Synthesis of Bi3+ and Eu3+ co-doped Na4CaSi3O9 blue-red light tunable emission phosphors for inducing plant growth, Ceramics International, 2024, 50, 9058-9069.

10 H. Li, X.J. Zhang, J. Peng, S.J. Yang, R.M. Hu, X.C. Jiang, Donor–acceptor cross-conjugated phenazine macrocycle with large Stokes shift for “turn-on” sensing transition metal ions, Journal of Materials Chemistry C, 2024, 12, 10127-10134.

RepresentativePatents

1. Metallic Nanostructures, Formation and Shape Selection. USA, No. US 10/732,910 (2003).

2. A  method for the preparation of VO2 nanopowder and its dispersion & thin coatings.  201811407165.5

3. A method for the synthesis of R-VO2 nanoparticles. 201811407204.1

4. A solid-state method for the large-scale preparation of R-VO2 nanopowders. 201811407373.5

5. A simple but effective method for the synthesis of R-VO2 micro-nanoparticles. 201811407464.9

6. A method for the preparation of polyacrylate@VO2 micelles fro unique applications. 202210027077.2,授权,2024.4.12

7. A method for the synthesis of Na4CaSi3O9:Bi3+, Eu3+ phosphors for functional applications. 202310811978.5Granted on 2024.4.5

8. A novel method for the preparation of red-light conversion rare-organic materials with group of α,α,α-terpyridine. 202311579463.3, Granted on 2024.1.26

9. A diketopyrrolopyrrole based red light conversion agent material. International Patent (South Africa),No. 2023/00481, Granted on 2023.08.11.

10. A method for the preparation of VO2@Mg1.5VO4 multi-pore film for special applications. 202210750984.XGranted on 2023.10.20

Others

· Associate Editor/Editorial Board Member of 3 journals: (1) Inter. J. of Nano Study and Technology; (2) Nanomaterials.; and (3) Sensors.

· International conference organizer/Session Chair

· Delivered over 30 plenary, Keynote and invited talks in national and international conferences

· OZ reader for ARC and NHMRC grants and Assessor for China NSF grants

· Examiner for PhD thesis from different countries (Aus. France, Singapore and China,)

· Referee for tens of journals (Adv. Mater., Small, ACS Nano, Chem. Mater. Nanoscale, Langmuir)

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