個人簡介
博士生導(dǎo)師,德國萊布尼茨固態(tài)和材料研究所兼職博士生導(dǎo)師;貒叭蔚聡R布尼茨固態(tài)和材料研究所課題組長,主要從事新能源材料和器件的研究工作。近年來共在國際權(quán)威學(xué)術(shù)期刊如J. Am. Chem. Soc.、Angew. Chem. Int. Ed.、Adv.Mater.、Adv. Energy Mater.、Nano Letters、ACS Nano、Energy & Environmental Science等雜志上發(fā)表論文40多篇,其中以第一作者/通訊作者發(fā)表影響因子大于10.0的論文超過15篇,論文已被引用1300多次。研究工作被超過30個媒體和專業(yè)網(wǎng)站如Science Newsline, Science daily, Science seeker, Chemistry world, Renewable Energy, the Latest Science、Newsline和ACS等作為亮點報道。開發(fā)出的薄膜儲能器件在微電子器件領(lǐng)域有廣泛的用途,目前正與德國Anvo-Systems Dresden GmbH公司開展商業(yè)化合作研究。2013年接受了英國皇家化學(xué)會(RSC)的獨家專訪,報道課題組研究進展。研究成果連續(xù)2年入選德國IFW-Dresden研究所年度進展報告,并被全球Renewable Energy選為“Highlight”報道。以課題負責(zé)人的身份先后開展了5項以上科研項目,并榮獲多項國際國內(nèi)科研獎勵和表彰。2011年開始以課題組長身份在德國萊布尼茨固態(tài)和材料研究所(IFW-Dresden)指導(dǎo)博士生,2013年獲得了德國IFW-Dresden研究所頒發(fā)的杰出科研獎。
主要研究領(lǐng)域
1.高容量鋰離子電池/超級電容器
2.面向微電子器件領(lǐng)域應(yīng)用的全固態(tài)儲能材料與器件
3.薄膜卷曲儲能材料與器件
4.儲能器件的表界面物理化學(xué)
獲獎與榮譽
1.2013年德國IFW-Dresden研究所杰出科研獎
2.2011年德國洪堡獎學(xué)金
3.2010加拿大FQRNT獎(加拿大魁北克省第一名)
4.2009加拿大FRSQ獎(加拿大魁北克省第三名)
5.2009年度中國建筑材料聯(lián)合會-中國硅酸鹽學(xué)會建筑材料科學(xué)技術(shù)獎基礎(chǔ)研究類二等獎
6.2009年遼寧省科學(xué)技術(shù)獎勵三等獎
7.2008年“芙蓉學(xué)子?榜樣力量”學(xué)術(shù)科研獎
8.2007年“中國優(yōu)秀百篇最具影響國際學(xué)術(shù)論文獎”
9.全國博士生學(xué)術(shù)論壇優(yōu)秀論文獎
10.中國科學(xué)院獎學(xué)金
代表性論著
1. Zhang L,* Deng J, Liu L, Si W, Oswald S, Xi L, Kundu M, Ma G, Gemming T, Baunack S, Ding F, Yan C,* et al., Hierarchically Designed SiOx/SiOy Bilayer Nanomembranes as Stable Anodes for Lithium Ion Batteries, Adv. Mater. 2014, DOI: 10.1002/adma.201401194.
2.Si W,* I M?nch Yan C,* et al., A Single Rolled-Up Si Tube Battery for the Study of Electrochemical Kinetics, Electrical Conductivity, and Structural Integrity, Adv.Mater. 2014, DOI: 10.1002/adma.201402484.
3. X Li, Yan C,* et al., Stable silicon anodes for lithium ion batteries using mesoporous metallurgical silicon, Adv. Energy Mater. 2014, DOI: aenm.201401556.
4. Ding L, He S, Miao S,* Jorgensen M, Leubner S, Yan C,* et al., Ultrasmall SnO2 Nanocrystals: Hot-bubbling Synthesis, Encapsulation in Carbon Layers and Applications in High Capacity Li-Ion Storage, Scientific Reports, 2014, DOI: 10.1038/srep04647.
5. Yan C,* Xi W, Si W, Deng J, Schmidt, O.G, Highly Conductive and Strain Released Hybrid Multilayer Ge/Ti Nanomembranes with Remarkably Enhanced Lithium Ion Storage Capability, Advanced Materials, 2013, 25, 539.
6. Deng J, Ji H, Yan C,* Si W, Chen Y, Mei Y, Schmidt O.G, Naturally Rolled-up C/Si/C Trilayer Nanomembranes as Stable Anodes for Lithium Ion Batteries with Remarkable Cycling Performance, Angewandte Chemie International Edition, 2013, 125, 2382.
7. J Ni*, Y Zhao, T Liu, H Zheng, L Gao, C Yan*, L. Li*, Strongly Coupled Bi2S3@CNT Hybrids for Robust Lithium Storage, Advanced Energy Materials, 2014, DOI: 10.1002/aenm.201400798.
8. Sun X, Yan C,* Chen Y, Si W, Deng J, Oswald S, Liu L, Schmidt. O. G, Three-Dimensionally “Curved” NiO Nanomembranes as Ultra-High Rate Capability Anodes for Li-ion Batteries with Long Cycle Life, Advanced Energy Materials, 2013, DOI: 10.1002/aenm.201300912.
9. Deng J,* Yan C,* Yang L, Baunack S, Oswald S, Wendrock H, Mei Y, Schmidt O G, Sandwich-Stacked SnO2/Cu Hybrid Nanosheets as Multi-Channel Anodes for Lithium Ion Batteries, ACS Nano, 2013, 7, 6948.
10. Si. W, Yan C,* Chen. Y, Oswald. S, Han. L, Schmidt. O.G, On chip, all solid-state and flexible micro- supercapacitors with high performance based on MnOx/Au multilayers, Energy & Environmental Science, 2013, 6, 3218.
11. Mark. Rümmeli, M Zeng, S Melkhanova, S Gorantla, A Bachmatiuk, L Fu, C Yan, S Oswald, R. Mendes, D Makarov, O Schmidt, J Eckert, Insights in to the Early Growth of Homogeneous Single-Layer Graphene over Ni-Mo binary substrates, Chemistry of Materials, 2013, 25, 3880.
12. Yu Y,* Yan C,* Gu L,* Lang, X, Tang K, Zhang, L, Hou, Y, Wang, Z, Chen, M, Schmidt O.G, Maier J, Three-dimensional (3D) Bicontinuous Au/amorphous-Ge Thin Films as Fast and High-Capacity Anodes for Lithium ion Batteries, Advanced Energy Materials, 2013, 3, 281.
13. Chen. Y, Yan C,* Schmidt, O.G, Strain-Driven Formation of Multilayer Graphene/GeO2 Tubular Nanostructures as High-Capacity and Very Long-Life Anodes for Lithium-Ion Batteries, Advanced Energy Materials, 2013, 3, 1269.
14. Yan C,* Li X, Zhou K, Pan A, Werner P, Mensah S, Vogel A, Schmidt V, Heteroepitaxial Growth of GaSb Nanotrees with an Ultra-Low Reflectivity in a Broad Spectral Range, Nano Letters, 2012, 12, 1799.
15. Karnaushenko D, Makarov D, Yan C, Streubel R, Schmidt O.G., Printable Giant Magnetoresistive Devices, Advanced Materials, 2012, 24, 4518.
16. Yan C, Dadvand. A, Rosei. F, et al., Near-IR Photoresponse in New Up-Converting CdSe/NaYF4:Yb,Er Nanoheterostructures, J. Am. Chem. Soc., 2010, 132, 8868.
17. Yan C, Nikolova. L, Dadvand. A, et al., Multiple NaNbO3/Nb2O5 Heterostructure Nanotubes: Local Ferroelectric Response and Electric Properties investigation, Advanced Materials, 2010, 22, 1741.
18. Yan C, Xue D, Formation of Nb2O5 nanotube arrays through phase transformation, Advanced Materials, 2008, 20, 1055.