李妍 (教授)

教授 博士生导师 硕士生导师

主要任职:实验教学中心主任

曾获荣誉:地大学者青年拔尖人才(A类),地大学者青年优秀人才(A类)

性别:女

毕业院校:伦敦大学

学历:博士研究生

学位:工学博士学位

在职信息:在职

所在单位:珠宝学院

入职时间:2017-07-01

职务:教授

学科:宝石及材料工艺学 矿物学、岩石学、矿床学 材料科学与工程

办公地点:珠宝学院612

联系方式:+86(0)27-67886373;+8617702738732

Email:

个人简历


地大学者“青年拔尖人才”(A类)

英国伦敦大学材料科学博士,教授,博导

科学技术发展院 副院长(挂职)

实验教学中心主任


 李妍,伦敦大学材料科学博士,中国地质大学(武汉)教授,博士生导师,珠宝学院实验教学中心主任,地大学者青年拔尖人才(2021),地大学者青年优秀人才(2017)。主要研究增材制造复合材料与结构设计(金刚石/石墨烯复合材料)、树脂化石成分解析与产地溯源。入职后主持十项科研项目(含国家自然基金青年项目,武汉市科技局项目,中央高校杰出人才项目,湖北省自然基金面上项目),学科骨干参与八项科研项目(装备预研教育部联合基金创新团队项目,国家重点研发计划课题,国家自然基金面上项目,湖北省农业农村领域科技计划项目,湖北省揭榜项目,中英国际交流合作项目、英国战略技术委员会资助Nanosynth Project项目,欧盟Polygraph项目)。


  • 主要从事增材制造复合材料与结构设计金刚石复合材料增材制造,树脂化石成分解析与产地溯源

  • 发表高水平学术论文92篇,SCI论文60篇(第一作者/通讯作者发表论文40篇,封面论文3篇),参编英文专著3部(2部Elsevier 出版),参编中文专著1部和中文教材1部;

  • 单篇文章引用1682020)130 2017),授权国家发明专利5项;

  • 国际期刊审稿人:Advanced Materials (IF=32.086);Additive Manufacturing(IF=10.998,JCR制造学科排名第一,增材制造领域第一);Composites Part A(IF=9.463);Advanced Materials Technologies(IF=8.856);Nanotechnology Reviews(IF=7.848);Gems & Gemology(宝石学TOP1期刊)等。Additive Manufacturing Frontier青年编委。

  • 中国机械工程学会2023优秀论文


  • https://publons.com/wos-op/researcher/1585455/yan-li/publications/

    If you would like to join us, please contact Associate Prof. YAN LI (yanli@cug.edu.cn) and include your CV with research interests and potential project ideas. 

    In the application, please indicate your interests in working at Yan Research Lab. We welcome researchers with different backgrounds in materials science, gemology, chemistry, physics, and related fields.



主持/参与项目

  • 突破纵向项目:主持国家自然基金青年项目、湖北省自然基金项目、武汉市科技局前资助、中央高校杰出人才项目等11

  • 广泛参与国家重点研究计划、中英国际合作交流项目、湖北省揭榜项目(军工合作)、装备预研教育部联合基金创新团队项目、国自然基金面上项目等十多项 

  • 具有海外大型项目/工业界项目经验:欧盟Polygraph(€ 600万)英国TSB Nanosynth(£100百万)


专业技能

  • 国家珠宝玉石质量检验师执业资格证书(编号:京-2010-S-025, 合格人员编号:HG 0001097)

  • FGA宝石协会鉴定师证书 (Pass with Merit,理论测试A实践测试A,证书编号:100/2778/6)

  • 职业资格证书: GIC宝石检验员,GIC钻石检验员

  • 外语水平:CET-6 623,英语专业八级

主持项目

  • 广东省基础与应用基础研究自然科学基金面上项目,穿戴防护相变储热矿物复合材料“ 皮芯纤维 ”TPMS点阵结构增材成型与性能调控,15万,在研,主持,2024.01.01-2025.12.31

  • 大规模个性化定制系统与技术全国重点实验室开放课题青年项目,基于适老化通用大模型的大规模个性化定制智能设计与制造技术,在研,主持,5万,2023.08-2025.07,No. H&C-MPC-2023-02-06(Q)

  • 国家自然科学基金委员会,青年项目,51902295,3D打印石墨烯复合材料功能梯度结构设计与吸波性能优化研究,2020.01至2022.12, 25万元,结题,主持

  • 武汉市科技局前资助项目,2020010601012172,高分辨率高导热金刚石复合材料绿激光选区熔融增材制造关键技术,2020.07至2022.12,50万元,结题,主持

  • 中央高校基本科研业务费,杰出人才培育基金项目,CUG170677,石墨烯增强生物基光敏树脂在增材制造技术成形上的研究,2017/09-2020/09,30万元,结题,主持

  • 湖北省科学技术厅,湖北省自然基金青年项目,2019 CFB264,基于水处理的累托石和活性炭负载TiO2三维梯度多孔结构的调控及稳定机制研究, 2019.07至2020.07,5万元,结题,主持

  • 湖北省教育厅哲学社会科学项目,No. 21G007,丝绸之路上中西方珠宝玉器的互动关系及数据库建设-以汉代海昏侯墓为例,2021.09-2023.09,2万元,在研

  • 湖北省珠宝工程技术研究中心,No. CIGTXM-03-202304,古代出土琥珀文物典型老化特征和劣化程度的原位评估方法,5万元,2023-2024,主持,在研

  • 湖北省珠宝工程技术研究中心,No. CIGTXM-03-202104,江西南昌海昏侯墓出土琥珀的产源研究,5万元,2021.12-2022.12. 结题,主持

  • 湖北省珠宝工程技术研究中心,No. CIGTXM-03-202003,高分辨率高导热铜复合材料激光选区熔融增材制造关键技术2020.07至2022.07,5万元,结题,主持

  • 珠宝检测中心,No. CIGTWZ-201801缅甸、墨西哥和多米尼加蓝珀“荧光跳色”差异性研究,5万元,2018-2019. 结题,主持

参与项目

  • 装备预研教育部联合基金创新团队项目,航天推进系统内部精细结构设计与增材制造,2023,150万,参与

  • 湖北省农业农村领域科技计划项目,个性化富硒粞食品增材制造与智能化加工装备研制( 省拨经费30万, 湖北省重点研发计划项目, 项目编号:2023BBB096, 2023.08.01-2025.07.31)

  • 湖北省揭榜项目:异种金属新型发动机推力室与冷却结构整体化增材制造,2021BEC010,2021/01/01-2023/12/31260万,在研

  •  湖北省珠宝工程技术研究中心,理工类重大项目,CIGTXM-01-202001,银合金增材制造,2020.072023.0750万元,在研,参加

  • NSFC中英国际交流合作项目,5191101701,面向可持续发展的多矿物材料增材制造与数字化设计,14.3万元,结题,参加

  • 国家重点研发计划项目,2018YFF0215400,资源类及高值产品产地溯源、掺假识别技术研究,207万,结题,参加

  • NSFC面上项目,51272241,新型低成本ZrO2-SiC-Al2O3高性能耐磨陶瓷的制备及磨损性能研究,2013.01.2016.1280万元,结题,参加

  • 英国战略技术部,TSB项目NanoSynth project 101257Graphene-Reinforced Epoxies for High Performance Applications http://www.nanosynthproject.org.uk/2012.012016.071百万英镑,结题,参加

  • 欧盟国际合作项目,Polygraph project, 604143, Up-Scaled Production of Graphene Reinforced Thermosetting Polymers for Composite, Coating and Adhesive Applications, http://www.polygraphproject.eu , 2013.01.2016.126百万欧元,结题,参加



人才培养

指导本科生:

  •  2018级: 冯祖莹(共同指导).保研上海交通大学,发表SCI论文3篇(第一作者1篇)。

  •  2018级:孙舒玮,保研海洋所,中国地质大学(武汉)优秀学士论文.

  •  2019级:王世莹,保研中科院,中国地质大学(武汉)优秀学士论文


指导研究生:

  •  2018级:程卡卡(地大保研),激光选区熔化成形纯铜及其碳材料表面功能化研究,第一作者发表SCI论文2篇,中文期刊论文1篇,获研究生国家奖学金, 获

     得国家留学基金委CSC奖学金,获得英国帝国理工博士录取,2021年秋季前往英国攻读博士学位。

  •  2019级:王雨珅(地大保研),硕士提前1年毕业,第一作者发表SCI论文3篇,获得国家留学基金委CSC奖学金,获得英国伦敦大学玛丽皇后学院博士录取,

     2021年秋季前往英国攻读博士学位。

学术论文 (时间顺序,*为通讯作者)

[1]      Xing Ping Li,  Yamei Wang, Guanghai Shi, Ren Lu,  Yan Li*, Evaluation of natural ageing responses on Burmese amber durability by FTIR spectroscopy with PLSR and ANN models, Spectrochimica Acta Part A: Molecular and Biomolecular Spectroscopy 通讯作者 285, 2023, 121936

[2]      Chenxing Xin, Yan Li*, Digital Light Processing 3D Printing of Lightweight Fe3O4/rGO/resin Composites with Enhanced Microwave AbsorptionMaterials Today Communication, 2022. 31: 103865.IF: 3.383)通讯作者

[3]      Tianting Lei, Yan Li*, Fengshun Xu, Mingxing Yang, Banded turquoise from Zhushan County, Hubei Province, China, Gem & Gemology, 2021. Volume 57. No.4, P:402-404

[4]      Yan Li, Lijing Huang, Feifei Yan, et al., Graphene oxide-loaded magnetic nanoparticles within 3D hydrogel form high-performance scaffolds for bone regeneration and tumour treatmentCompos. Part A Appl. Sci. Manuf. 2021, 152: 106672.IF: 7.664

[5]      Li Y, Feng Z, Huang L, Essa K, Bilotti E, Zhang H, Peijs T, Hao L. Additive manufacturing high performance graphene-based composites: A review. Compos. Part A Appl. Sci. Manuf., 2019, 124: 105483. IF: 7.664

[6]      Y. Li, T. Peijs, E. Bilotti et al, Synergistic Effects of Spray-Coated Mixed Carbon Nanoparticles for Enhanced Electrical and Thermal Surface Conductivity of CFRP Laminates, Compos. Part A Appl. Sci. Manuf., 2018, 105:9-18. IF: 7.664

[7]      Yan Li, Zuying Feng, Ton Peijs, et al., A Review on functionally graded materials and structures via additive manufacturing: from multi-scale design to versatile functional properties, Adv. Mater. Technol. 2020, 5(6): 1900981.IF: 7.848

[8]      Y. Li, P. T. Peijs, E. Bilotti et al, Mechanical, Electrical and Thermal Properties of In-situ Exfoliated Graphene/Epoxy Nanocomposites. Compos. Part A Appl. Sci. Manuf.,, 2017;95:229-36. IF: 7.664

[9]      Y. Li, T. Peijs, E. Bilotti et al, In-situ exfoliation of graphene in epoxy resins: a facile strategy to efficient and large scale graphene nanocomposites. ACS Applied materials & Interfaces, 2016, 8(36): 24112-24122. IF: 9.229

[10]   Kaka Cheng, Wei Xiong, Yan Li*, In-situ deposition of three-dimensional graphene on selective laser melted copper scaffolds for high performance applications, Compos. Part A Appl. Sci. Manuf. 2020, 135: 105904. IF:7.664, CNPComp2019 会议海报二等奖,通讯作者,晶格设计

[11]   Ping Gong1, Yan Li1, Liang Hao*, Multimaterial 3D-printing barium titanate/carbonyl iron composites with bilayer-gradient honeycomb structure for adjustable broadband microwave absorption, Ceram. Int. 2022, 48(7): 9873-9881.IF=4.527,共同一作)

[12]   Wei Xiong, Liang Hao, Yan Li* et al., Simultaneous strength and ductility enhancements of high thermal conductive Ag7.5Cu alloy by selective laser melting, Sci. Rep., 2022, 12(4250): 1-15. IF: 4.380,通讯作者)

[13]   Xiong W, Hao L*, Li Y*, Tang D, Cui Q, Feng Z, Yan C. Effect of selective laser melting parameters on morphology, microstructure, densification and mechanical properties of supersaturated silver alloy. Materials & Design, 2019, 170: 107697IF=7.991,通讯作者,增材制造设计相关

[14]   Kaka Cheng, Wei Xiong, Yan Li*, et al., In-site deposition of diamond on functionally graded copper scaffold for improved thermal conductivity and mechanical properties. Mater. Lett. 2021, 299: 130050.IF=3.423,通讯作者

[15]   Ping Gong, Liang Hao*, Yan Li, et al., 3D-printed carbon fiber/polyamide-based flexible honeycomb structural absorber for multifunctional broadband microwave absorption, Carbon. 2021, 185: 272-281.IF=9.594封面论文,第三作者,增材制造设计相关

[16]   Meng He, Yan Li, Lei Yang*, et al., Compressive performance and fracture mechanism of bio-inspired heterogeneous glass sponge lattice structures manufactured by selective laser melting. Mater. Des. 2022, 214: 110396.IF=7.991,第二作者,增材制造设计相关,金属点阵设计

[17]   Zheng Li*, Yan Li, Yusheng Wang, et al., Dual gradient direct ink writing of functional geopolymer-based carbonyl-iron/graphene composites for adjustable broadband microwave absorption, Ceram. Int. 2021, 48(7): 9277-9285.IF=4.527,第二作者)

[18]   Danna Tang, Yushen Wang, Zheng Li*, Yan Li, et al., Coupling additive manufacturing and low-temperature sintering: a fast processing route of silicate glassy matrix, Rapid Prototyping J. 2021, https://doi.org/10.1108/RPJ-07-2020-0173.IF=3.095

[19]   Lu Zhang, Yan Li, Simeng Li, Ping Gong, Qinglei Sun, Liang Hao. Fabrication of Titanium and Copper-Coated Diamond/Copper Composites via Selective Laser Melting, Micromachines, 2022, 13, 724.

[20]   Ping Gong, Xiaokang Yan, Wei Xiong, Liang Hao*, Danna Tang, Yan Li*, Design of a debinding process for polymetallic material green parts fabricated via metal paste injection 3D printing with dual nozzles, RSC Adv., 2020, 10:18000.IF=3.361,通讯作者)

[21]   Yushen Wang, Wei Xiong, Danna Tang, Liang Hao*, Zheng Li, Yan Li*, et al., Rheology effect and enhanced thermal conductivity of diamond/metakaolin geopolymer fabricated by direct ink writing, Rapid Prototyping J. 2021, 27: 837-580.IF=3.095, 通讯作者

[22]   Liang Hao, Danna Tang*, Tao Sun, Wei Xiong, Zuying Feng, Ken E. Evans, Yan Li*, Direct ink writing of mineral materials: A review. Int. J. Precis. Eng. Manuf.-Green Technol., 2021, 8: 665-685.IF=5.671,通讯作者

[23]   Danna Tang, Liang Hao, Yan Li*, et al., Dual gradient direct ink writing for formation of kaolinite ceramic functionally graded materials, J. Alloy. Compd., 2020, 814: 152275.IF=5.316,通讯作者)

[24]   G. Santagiuliana, Yan Li, et al. Breaking the nanoparticle loading-dispersion dichotomy in polymer nanocomposites with the art of croissant-making, ACS NANO. 2018, 12(9):9040-9050. doi: 10.1021/acsnano.8b02877

[25]   Danna Tang, Liang Hao, Yan Li, et al, Investigation of Wax-Based Barite Slurry and Deposition for 3D Printing Landslide Model, Compos. Part A Appl. Sci. Manuf., 2018,108:99-106

[26]   Tang, D., Hao, L., Li, Y*. and Li, Z. (2020), "Effect of clay functionally graded materials on dual gradient direct ink writing behavior and microstructure of geological model", Rapid Prototyping Journal, Vol. 26 No. 1, pp. 39-48. https://doi.org/10.1108/RPJ-01-2019-0023.

[27]   Wang Y, Li Y*, Liu F, et al. Characteristic of Hydrothermally Treated Beeswax Amber. Gems & Gemology, 2019, 55(3).

[28]   Chenxing Xin, Yan Li*, Characterisation of Patchy Blue and Green Colouration in Dominican Blue Amber, Journal of Gemmology, 37(7), 2021, pp. 700–713.

[29]   Liu L, Yang M, Li Y, et al. Technical Evolution and Identification of Resin -filled turquoise [J]. Gems & Gemology, 2021, 57(1).

[30]   L Liu, M.X. Yang* , Y Li, Unique Raindrop Patterns of Turquoise from Hubei, China. Gems & Gemology, 2020, 56(3).

[31]   Li Z, Qi W, Cao J, Li Y*, Viola G, Jia C, Yan H. Multiferroic properties of single phase Bi3NbTiO9 based textured ceramics. J. Alloy. Compd.,, 2019, 788: 701-704.

[32]   Feng Z, Li Y*, Hao L, et al. Graphene-Reinforced Biodegradable Resin Composites for Stereolithographic 3D Printing of Bone Structure Scaffolds. Journal of Nanomaterials, 2019, 2019:1-13.

[33]   Ruiqi Pan, Yan Li*, Microscopic morphology, thermodynamic and mechanical properties of thermoplastic polyurethane fabricated by selective laser sinteringMaterials Research Express, 2020, 7(5): 055301, https://doi.org/10.1088/2053-1591/ab8b87.

[34]   Feng Z, Li Y*, Zhang H, Fabrication of Graphene-Reinforced Nanocomposites with Improved Fracture Toughness in Net Shape for Complex 3D Structures via Digital Light ProcessingJournal of Carbon Research2019, 5(2), 25. http://dx.doi.org/10.3390/c5020025.

[35]   Feng Z, Liu L, Li L, Chen J, Liu Y, Li Y, Hao L, Wu Y. 3D printed Sm-doped ceria composite electrolyte membrane for low temperature solid oxide fuel cells. International Journal of Hydrogen Energy2019, 44(26): 13843-13851.

[36]   Zheng Li, Wenzhi Qi, Jun Cao, Yan Li, Giuseppe Viloa, Spark plasma sintering of grain-oriented Sr2Bi4Ti5O18 aurivillius phase ceramics, J. Alloy. Compd., 2019. 782.25. 6-9.

[37]   Cao J, Koval V, Zhang H, Lin Y, Wu J, Meng N, Li Y, Li Z, Zhang H, Yan H. Crystal structure and electrical properties of textured Ba2Bi4Ti5O18 ceramics. Journal of the European Ceramic Society 2019, 39(4): 1042-1049.

[38]   Y. Li, T. Peijs, E. Bilotti et al, Graphite Nanoplatelet (GNP) Modified Epoxy Resin for Carbon Fibre Reinforced plastics (CFRP) with Enhanced Properties. Journal of Nanomaterials, 2017 (2017), Article ID 5194872, https://doi.org/10.1155/2017/5194872.

[39]   Y. Li, T. Peijs, E. Bilotti et al, Enhanced Thermal and Electrical properties of polystyrene - graphene nanoplatelet nanofibres via electro spinning. Journal of Nanomaterials, 2016 (2016), Article ID 4624976, http://dx.doi.org/10.1155/2016/4624976.

[40]   Li Y, Huang Z, Fang M. Characterization of dielectric performance of tourmaline single crystals from Yunnan, China [J]. CrystEngComm. 2012, 14(21): 7153-7156.

[41]   Li Y, Zhang H, Peijs T, et al. Graphene Delivery Systems for Hierarchical Fibre Reinforced Composites. MRS Advances, 2016, 19(1): 1339-1344.

[42]   Li Y, Zhang H, Bilotti E, et al. Optimization of Three-Roll Mill Parameters for In-Situ Exfoliation of Graphene. MRS Advances, 2016, 19(1): 1389-1394.

[43]   Y. Li, Z. H. Huang, Y. G. Liu, M. H. Fang, "Preparation and Performance Characterization of   Nanometer-Sized Tourmaline Films", Key Engineering Materials, Vol. 537, pp. 252-255, Jan. 2013.

[44]   Chen Guo, Zhang Shouting, Li Yan. 3D Geological Modeling and Assessment of Site Suitability based on Orthogonal Polynomials and Markov Matrix [J]. International Information Institute (Tokyo). Information, 2012, 15(11): 4755.

[45]   Y. Li, Y. Guo, "Colorimetry Study on Red Tourmaline Color Genesis", Key Engineering Materials,Vols. 512-515, pp. 657-660, Jun. 2012.

[46]   Y. Li, Z. H. Huang, Y. G. Liu, "Study on Mineral Composition and Main Mineral Morphology of   Bauxite from ZhongXiang, HuBei Province", Key Engineering Materials, Vols. 512-515, pp. 648-651, Jun. 2012.

 



出版书籍

[1]     Fundamentals of 3D Food Printing and Applications1章(No.2),2019ISBN: 978-0-12-814564-7, AP Academic PressCopyright © 2019 Elsevier.

[2]     Triply Periodic Minimal Surface Lattices Additively Manufactured by Selective Laser Melting》(全书作者共7位,No.7ISBN: 9780128244388Elsevier2021.

[3]     Digital Meets Handmade Jewelry Design, Manufacture, and Art in the Twenty-First Century1章(No.4, ISBN13: 978-1-4384-8766-3SUNY PRESS2021.

[4]     《增材制造三周期极小曲面仿生超材料》3D打印前沿技术丛书(No.6, ISBN 978-7-5680-7584-8,华中科技大学出版社,2021.

[5]     《宝石鉴定仪器教程》,中国地质大学出版社,2022,参编(No.4



教育经历

[1]   2012.10-2016.12

伦敦大学  |  材料科学与工程  |  工学博士学位  |  博士研究生毕业

[2]   2008.9-2011.6

中国地质大学(北京)  |  矿物学、岩石学、矿床学  |  理学硕士学位  |  研究生(硕士)毕业

[3]   2004.9-2008.6

中国地质大学(北京)  |  宝石及材料工艺学  |  工学学士学位  |  大学本科

工作经历

[1]   2017.7-至今

中国地质大学(武汉)珠宝学院  |  Gemmological Institute  |  特任副教授(考核优秀)

研究方向

  • [1]   树脂化石成分解析与产地溯源(出土琥珀应用)

  • [2]   增材制造复合材料与结构设计

  • [3]   金刚石、石墨烯复合材料

  • [4]   多材料及微纳结构3D打印、地聚物微滴喷成形

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