李文翠[大連理工大學教授]

李文翠[大連理工大學教授]
李文翠[大連理工大學教授]
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李文翠,現任大連理工大學教授。教授、博導、化工學院副院長

基本信息

人物經歷

1987.09-1991.07 大連理工大學化工學院獲工學學士學位

1991.09-1994.07 大連理工大學化工學院獲工學碩士學位

1994.07-2006.10 大連理工大學化工學院助教,講師

1997.09-2000.07 大連理工大學化工學院博士生

2000.09-2001.07 上海同濟大學留德預備部進修德語

2001.08-2001.10 德國哥廷根歌德學院學習德語

2001.10-2002.08 德國維爾茲堡大學聯合培養博士生

2003.04 大連理工大學化工學院獲工學博士學位

2003.08-2006.10 德國馬普學會煤化學所博士後

2006.11-至今大連理工大學化工學院教授,博導

2007年入選遼寧省百千萬人才工程

2008年入選教育部新世紀優秀人才支持計畫

研究方向

1.高比表面積納米結構多孔材料的合成化學

2.高性能超級電容器電極材料的製備

3.鋰離子電池電極材料的製備

4.納米金的催化行為研究

5.煤的高效清潔利用

碩博研究方向

1.高性能超級電容器電極材料的製備及套用

2.鋰離子電池電極材料的製備及套用

3.納米金催化劑在一氧化碳氧化中催化作用研究

4.高穩定磁性納米顆粒的合成及在催化中的套用

主要貢獻

2000年至今發表論文70餘篇,國際期刊40餘篇。

承擔國家自然科學基金、教育部博士點基金、教育部重點計畫、與英國的國際合作及國內企事業委託項目多項。

1.“一種納米氧化鋅摻雜的高比表面積塊體多孔炭的製備方法”發明專利, 已授權, ZL 200810011961.7, 2010

2.“一種常壓下製備超疏水性二氧化矽氣凝膠的方法”發明專利, 已授權, ZL 201010205734.5, 2010

3.“一種尺寸和形貌可控的單分散納米空心炭球的製備方法”發明專利, 已授權, ZL 201010010087.2, 2010

4. “快速合成塊體分等級孔道結構含氮多孔炭的方法”發明專利, 已授權, ZL 200910220488.8, 2009

5.“高能量密度不對稱超級電容器及其製備方法”發明專利, 已授權, ZL 200910010922.X, 2009

6.“在2.4~3.0V工作電壓下使用的水相超級電容器及其製備方法”發明專利, 已授權, ZL 200910012011.0, 2009

7.“一種廉價製備納米材料炭氣凝膠的方法”發明專利, 已授權, ZL 03133416.4, 2005

出版著作和論文

發表論文100餘篇,代表性論文如下:
2010
1.王小蓉,郝廣平,李文翠*,生物活性炭技術在水處理中的研究與套用,化工進展,2010,29(5):932-937
2.孫濤,王光輝,陸安慧,李文翠*,磁性氧化鐵納米顆粒的研究進展,化工進展,2010,29(7):1241-1250
3.G.–P. Hao, W.–C. Li(李文翠), D. Qian, A.–H. Lu*, Rapid synthesis of nitrogen–doped porous carbon monolith for CO2 capture, Adv. Mater. 2010, 22, 853–857. (影響因子: 14.829; 被引次數: 199)
4.A.–H. Lu*, W.–C. Li(李文翠), G.–P. Hao, B. Spliethoff, H.–J. Bongard, B. B. Schaack, F. Schüth, Easy synthesis of hollow polymer, carbon and graphitized microspheres, Angew. Chem. Int. Ed. 2010, 49, 1615–1618. (影響因子: 13.734; 被引次數: 63)
5.G.–P. Hao, W.–C. Li(李文翠), S. Wang, S. Zhang, A.–H. Lu*, Tubular structured ordered mesoporous carbon as an efficient sorbent for the removal of dyes from aqueous solutions, Carbon 2010, 48, 3330–3339. (影響因子: 5.868)
2011
6.高鵬程,王玉婷,李文翠,不同含量鉀離子支撐α- MnO2的合成及其電化學性能,電源技術,2011,35(4):412-415
7.米娟,王玉婷,高鵬程,李文翠,熱處理對二氧化錳電化學行為的影響,物理化學學報,2011, 27 (4), 893-899
8.P.–C. Gao, A.–H. Lu, W.–C. Li*(李文翠), Dual functions of activated carbon in a positive electrode for MnO2–based hybrid supercapacitor, J. Power Sources 2011, 196, 4095–4101. (影響因子: 4.290)
9.W.–C. Li*(李文翠), G.–Z. Nong, A.–H. Lu*, H. –Q. Hu, Synthesis of nanocast ordered mesoporous carbons and their application as electrode materials for supercapacitor, J. Porous Mater. 2011, 18, 23–30. (影響因子: 0.984)
10.T. Sun,G.-H. Wang, A.-H. Lu*, W.-C. Li(李文翠), Research development of magnetic magnetite nanoparticles, Chem. Ind. Eng. Prog., 2010, 29, 1241-1250.
11.G.–P. Hao, W.–C. Li(李文翠), A.–H. Lu*, Novel porous solids for carbon dioxide capture, J. Mater. Chem. 2011, 21, 6447–6451. (invited highlight, 影響因子: 5.968; 被引次數: 58)
12.Y.–T. Wang, A.–H. Lu, H.–L. Zhang, W.–C. Li*(李文翠), Synthesis of nanostructured mesoporous manganese oxides with three–dimensional frameworks and their application in supercapacitors, J. Phys. Chem. C 2011, 115, 5413–5421. (影響因子: 4.814)
13.G.–P. Hao, J. Mi, D. Li, W.–H. Qu, T.–J. Wu, W.–C. Li*(李文翠), A.–H. Lu*, A comparative study of nitrogen–doped hierarchical porous carbon monoliths as electrodes for supercapacitors, New Carbon Mater. 2011, 26(3), 197–203. (影響因子: 0.888)
14.X.–R.Wang, G.–P. Hao, A.–H. Lu, W.–C. Li*(李文翠), Adsorption and release behavior of vitamin B12 in tubular structured ordered mesoporous carbon, Acta Phys. –Chim. Sin. 2011, 27(9), 2239–2243. (影響因子: 0.869)
15.G.–P. Hao, W.–C. Li(李文翠), S. Wang, G.–H. Wang, L. Qi, A.–H. Lu*, Lysine–assisted rapid synthesis of crack–free hierarchical carbon monoliths with a hexagonal array of mesopores, Carbon, 2011, 49, 3762–3772. (影響因子: 5.868)
16.G.–P. Hao, W.–C. Li(李文翠), D. Qian, G.–H. Wang, W.–P. Zhang, T. Zhang, A. Wang, F. Schüth, H. Bongard, A.–H. Lu*, Structurally designed synthesis of mechanically stable poly(benzoxazine–co–resol)–based porous carbon monoliths and their application as high–performance CO2 capture sorbents, J. Am. Chem. Soc. 2011, 133, 11378–11388. (影響因子: 10.677)
17.G. –H. Wang, W. –C. Li(李文翠), K. –M. Jia, A. –H. Lu*, M. Feyen, B. Spliethoff, F. Schüth, A facile synthesis of shape– and size–controlled α–Fe2O3 nanoparticles through hydrothermal method, Nano: brief reports and reviews 2011, 6, 469–479. (影響因子: 1.106)

18.A. –F. An, A. –H. Lu, Q. Sun, J. Wang W. –C. Li*(李文翠), Gold nanoparticles stabilized by a flake–like Al2O3 support, Gold Bulletin, 2011, 44, 217–222. (影響因子: 2.434)
19.G. –H. Wang, Q. Sun, R. Zhang, W.–C. Li(李文翠), X. –Q. Zhang, A. –H. Lu*, Weak acid–base interaction induced assembly for the synthesis of diverse hollow nanospheres, Chem. Mater. 2011, 23, 4537–4542. (影響因子:8.238)
20.Onfroy Thomas, W.–C. Li(李文翠),Schueth Ferdi,The role of the sythesis method in the structure formation of cobalt aluminate,Top Catal,2011,54,390-397.
21.A.–H. Lu*, T. Sun, W.–C. Li(李文翠), Q. Sun, F. Han, D.–H. Liu, Y. Guo, Confined nanospace pyrolysis towards individual and dispersible hollow carbon nanospheres with high uniformity, Angew. Chem. Int. Ed. 2011, 50, 11765–11768. (影響因子: 13.734; 被引次數: 44)
22.S. Wang, W. –C. Li(李文翠), G. –P. Hao, Y. Hao, Q. Sun, X. –Q. Zhang, A. –H. Lu*, Temperature programmed precise control over the sizes of carbon nanospheres based on benzoxazine chemistry, J. Am. Chem. Soc. 2011, 133, 15304–15307. (影響因子: 10.677; 被引次數: 42)
23.R. –R. Zhang, L. –H. Ren, A. –H. Lu, W. –C. Li*(李文翠) Influence of pretreatment atmospheres on the activity of Au/CeO2 catalyst for low–temperature CO oxidation, Catal. Commun. 2011, 13, 18–21. (影響因子: 2.915)
2012
24.王光輝,李文翠,Fe3O4納米粒子作為催化劑和致孔劑製備高比表面積塊體石墨化炭,2012,27(1):55-60
25.韓飛, 陸安慧, 李文翠, 結構可控的炭基材料在鋰離子電池中的套用,化學進展,2012,24(12):2443-2456
26.Y. -T. Wang, A. -H. Lu, W. -C. Li(李文翠), Mesoporous manganese dioxide prepared under acidic conditions as high performance electrode material for hybrid supercapacitors, Micropor. Mesopor. Mater. 2012, 153, 247–253. (影響因子: 3.365)
27.A. -H. Lu*, G. -P. Hao, Q. Sun, X. -Q. Zhang, W. -C. Li(李文翠), Chemical synthesis of carbon materials with intriguing nanostructure and morphology, Macromol. Chem. Phys. 2012, 213, 1107-1131. (影響因子: 2.368, invited review; 被引次數: 31)
28.L. -H. Ren, H. -L. Zhang, A. -H. Lu, Y. Hao, W. -C. Li(李文翠), Porous silica as supports for controlled fabrication of Au/CeO2/SiO2 catalysts for CO oxidation: influence of the silica nanostructures, Micropor. Mesopor. Mater. 2012, 158, 7–12. (影響因子: 3.365)
29.H.-L. Zhang, L. -H. Ren, A. -H. Lu, W. -C. Li(李文翠), Role of CeO2 in three-component Au/CeO2/SiO2 composite catalyst for low-temperature CO oxidation, Chin. J. Catal., 2012, 33(7), 1125-1132. (影響因子: 1.304)
30.G. -P. Hao, F. Han, D. -C. Guo, R. -J. Fan, G. Xiong, W. -C. Li(李文翠), A. -H. Lu*, Monolithic carbons with tailored crystallinity and porous structure as lithium-ion anodes for fundamental understanding their rate performance and cycle stability, J. Phys. Chem. C 2012, 116, 10303?10311. (影響因子: 4.814)
31.L. -N. Cai, Y. Guo, A. -H. Lu, P. Branton, W. -C. Li(李文翠), The choice of precipitant and precursor in the co-precipitation synthesis of copper manganese oxide for maximizing carbon monoxide oxidation, J. Mol. Catal. A -Chem., 2012, 360, 35-41. (影響因子: 3.187)
32.Q. Sun, G. -H. Wang, W. -C. Li(李文翠), X. -Q. Zhang, A. -H. Lu*, Fabrication of functional hollow carbon spheres with large hollow interior as active colloidal catalysts, J. Nat. Gas Chem., 2012, 21, 251-256. (影響因子: 1.405)
33.F. Han, W. -C. Li(李文翠), M. -R. Li, A. -H. Lu*, Fabrication of superior-performance SnO2@C composites for lithium-ion anodes using tubular mesoporous carbon with thin carbon walls and high pore volume, J. Mater. Chem., 2012, 22, 9645–9651. (影響因子: 5.968; 被引次數: 69)

34.T. Sun, Y. Guo, W. -C. Li(李文翠), A. -H. Lu*, Synthesis of hydrophobic porous silica for removal of organic contaminations from water. Acta Phys.-Chim. Sin. 2012, 28 (6), 1432-1438. (影響因子: 0.869)

35.Y. Hao, G. -P. Hao, D. -C. Guo, C. -Z. Guo, W. -C. Li, M. -R. Li(李文翠), A. -H. Lu*, Bimetallic Au-Pd nanoparticles confined in tubular mesoporous carbons as highly selective and reusable benzyl alcohol oxidation catalysts, ChemCatChem, 2012, 4(10), 1595-1602. (影響因子: 5.181)

36.G. -P. Hao, W. -C. Li(李文翠), A. -H. Lu*, Nanostructured porous solids for CO2 sorption and separation, Chem. Ind. Eng. Prog, 2012, 31(11), 2497-2501.

37.Q. Sun, X. -Q. Zhang, F. Han, W. -C. Li(李文翠), A. -H. Lu*, Controlled hydrotheral synthesis of 1D nanocarbons by surfactant-templated assembly for use as anodes for rechargeable lithium-ion batteries, J. Mater. Chem., 2012, 22, 17049-17054. (影響因子: 5.968)

38.D. Qian, C. Lei, G.-P. Hao, W. -C. Li(李文翠), A. -H. Lu*, Synthesis of hierarchical porous carbon monoliths with incorporated metal–organic frameworks for enhancing volumetric based CO2 capture capability, ACS Appl. Mater. Interfaces, 2012, 4, 6125-6132. (影響因子: 5.008)

2013

39.錢旦,郝廣平,李文翠,含氮多孔炭的製備及其在二氧化碳吸附中的套用,新型炭材料,2013,28(4):267-272

40.程菲,孫薔,陸安慧,李文翠,溶劑熱法製備鋰離子電池正極材料磷酸鐵鋰,電源技術,2013,37(5):744-803

41.F. Han, D. Li, W. -C. Li(李文翠), C. Lei, Q. Sun, A. -H. Lu*, Nanoengineered polypyrrole-coated Fe2O3@C multifunctional composites with an improved cycle stability as lithium-ion anodes, Adv. Funct. Mater, 2013, 23(13), 1692-1700. (影響因子: 9.765; 被引次數: 49)

42.C. Lei, F. Han, D. Li, W. -C. Li(李文翠), Q. Sun, X. -Q. Zhang, A. -H. Lu*, Dopamine as the coating agent and carbon precursor for the fabrication of N-doped carbon coated Fe3O4 composites as superior lithium ion anodes, Nanoscale, 2013, 5(3), 1168-1175. (影響因子: 5.914; 被引次數: 56)

43.D. -C. Guo, J. Mi, G. -P. Hao, W. Dong, G. Xiong, W. -C. Li(李文翠), A. -H. Lu*, Ionic liquid C16mimBF4 assisted synthesis of poly(benzoxazine-co-resol)-based hierarchical porous carbons with superior performance in supercapacitors, Energy Environ. Sci., 2013, 6, 652-659. (影響因子: 9.61)

44.Q. Sun, W. -C. Li(李文翠), A. -H. Lu*, Insight into structure-dependent self-activation mechanism in a confined nanospace of core-shell nanocomposites, Small, 2013, 9(12), 2086-2090. (IF: 8.349)

45.Q. Sun, C. -Z. Guo, G. -H. Wang, W.-C. Li(李文翠), H. -J. Bongard, A. -H. Lu*, Fabrication of magnetic yolk-shell nanocatalyst with spatially resolved functionalities and high activity for nitrobenzene hydrogenation, Chem. Eur. J., 2013, 19(20), 6217-6220. (IF: 5.831)

46.F. Cheng, S. Wang, A. -H. Lu, W. -C. Li*(李文翠), Immobilization of nanosized LiFePO4 spheres by 3D coralloid carbon structure with large pore volume and thin walls for high power lithium-ion batteries, J. Power Sources, 2013, 229, 249-257. (IF: 4.675)

47.X. -Q. Zhang, Q. Sun, W. Dong, D. Li, A. -H. Lu, J. -Q. Mu, W. -C. Li*(李文翠), Synthesis of superior carbon nanofibers with large aspect ratio and tunable porosity for electrochemical energy storage, J. Mater. Chem. A, 2013, 1, 9449-9455. (影響因子: 5.968)

48.D. -H. Liu, Y. Guo, L. -H. Zhang, W. -C. Li(李文翠), T. Sun, A. -H. Lu*, Switchable transport strategy to deposit active Fe/Fe3C cores into hollow microporous carbons for efficient chromium removal, Small, 2013, 9(22), 3852-3857. (影響因子: 8.349)

49.G. -P. Hao, A. -H. Lu, W. Dong, Z. -Y. Jin, X. -Q. Zhang, J. -T. Zhang, W. -C. Li*(李文翠), Sandwich-type microporous carbon nanosheets for enhanced supercapacitor performance, Adv. Energy Mater., 2013, 3(11),1421-1427.(影響因子:10.043)

50.D. -C. Guo, W. -C. Li(李文翠), W. Dong, G. -P. Hao, Y. -Y. Xu, A. -H. Lu*, Rapid synthesis of foam-like mesoporous carbon monolith using an ultrasound-assisted air bubbling strategy, Carbon, 2013, 62, 322-329. (影響因子: 5.868; 被引次數: 38)

51.J. Wang, A. -H. Lu, M. Li, W. Zhang, Y. -S. Chen, D. -X. Tian, W. -C. Li*(李文翠), Thin porous alumina sheets as supports for stabilizing gold nanoparticles, ACS Nano, 2013, 7(6), 4902–4910. (影響因子: 12.062)

52.D. Qian, C. Lei, E. –M. Wang, W. –C. Li(李文翠), and A. –H. Lu*, A method for creating microporous carbons with excellent CO2 adsorption capacity and selectivity, ChemSusChem, 2013, DOI: 10.1002/cssc.201300585. (影響因子:7.951)

53.D. Li, F. Han, S. Wang, F. Cheng, Q. Sun, W. –C. Li*(李文翠), High sulfur loading cathodes fabricated using peapodlike, large pore volume mesoporous carbon for lithium ?sulfur battery, ACS Appl. Mater. Interfaces, 2013, 5 (6), 2208–2213.(影響因子:5.008; 被引次數: 40)

54.C. Lei, F. Han, Q. Sun, W. -C. Li(李文翠), A. –H. Lu*, Confined nanospace pyrolysis for the fabrication of coaxial Fe3O4@C hollow particles with a penetrated mesochannel as a superior anode for li-ion batteries, Chem. Eur. J, 2013, DOI: 10.1002/chem.201303175.(影響因子5.831)

55.J. –T. Zhang, Z. –Y. Jin, W. -C. Li(李文翠), W. Dong, A.-H. Lu*, Graphene modified carbon nanosheets for electrochemical detection of Pb(II) in water, J. Mater. Chem. A, 2013, 1(42) ,13139-13145. (影響因子:6.101)

56.L. –N. Cai , Z. Hu , P. Branton , W.-C. Li*(李文翠), The effect of doping transition metal oxides on copper manganese oxides for the catalytic oxidation of CO, Journal of Catalysis, DOI:10.1016/s1872-2067(12) 60699-8.(影響因子:6.073)

57.L.–N. Cai, Y. Guo, J.Mi, R. -J. Fan, Y.-Y. Xu, W.-C. Li*(李文翠), Easy synthesis of hierarchically structured porous carbon as electrodes for supercapacitor by using Zn(Ac)2 as difunctional additive, New Carbon Materials, 2013, accepted.(影響因子:1.197)

58.J. Wang, Z.–H. Hu, Y. –X. Miao, W. –C. Li*(李文翠), Hollow γ-Al2O3 microspheres as highly “active” supports for Au nanoparticle catalysts in CO oxidation, Gold Bulletin, 2013, accepted.(影響因子:3.517)

59.J. Wang, K. Shang, Y. Guo, W. –C. Li*(李文翠), Easy hydrothermal synthesis of external mesoporous α-Al2O3 nanorods as excellent supports for Au nanoparticles in CO oxidation, Micro. Meso. Mater, 2013, 181, 141–145.(影響因子:3.365)

60.S. Wang, W. -C. Li(李文翠), L. Zhang, Z. -Y. Jin, A. –H. Lu* Polybenzoxazine-based monodisperse carbon spheres with low-thermal shrinkage and their CO2 adsorption property J. Mater. Chem A, 2013, DOI:10.1039/C3TA15065H.(影響因子:6.101)

61.Fei Cheng, Shuai Wang, An-Hui Lu, W.–C. Li(李文翠), Immob ilization of nanosized LiFePO4 spheres by 3D coralloid carbon structure with large pore volume and thin walls for high power lithium-ion batteries, J. Power Sources 2013, 229: 249-257.(影響因子:4.675)

62.Dong-Hai Liu, Yue Guo, Lu-Hua Zhang, W.–C. Li(李文翠), Tao Sun and An-Hui Lu, Switchable Transport Strategy to Deposit Active Fe/Fe3C Cores into Hollow Microporous Carbons for Efficient Chromium Removal, Small, 2013,9(22),3852-3857.(影響因子:8.349; )

63.C. Lei, F. Han, Q. Sun, W. -C. Li(李文翠), A. –H. Lu, Confined nanospace pyrolysis for the fabrication of coaxial Fe3O4@C hollow particles with a penetrated mesochannel as a superior anode for li-ion batteries, Chem. Eur. J., 2013, 20(1),139-145.(影響因子:5.831; )

2014

64.J. Wang, Z.–H. Hu, Y. –X. Miao, W. –C. Li*(李文翠), Hollow γ-Al2O3 microspheres as highly “active” supports for Au nanoparticle catalysts in CO oxidation, Gold Bulletin, 2014, 47, 95-101.(影響因子:1.840;)

65.米娟, 李文翠*, 不同測試技術下超級電容器比電容值的計算, 電源技術,2014, 38, 1394-1398

66.F. Han, W. –C. Li(李文翠), D. Li, A. –H. Lu*, In situ generation of mesostrucured Cu2S/C composite cathode via electrochemical reaction for enhanced lithium storage and insights into the mechanism, ChemElectroChem, 2014, 1,733-740

67.D. Qian, C. Lei, E. –M. Wang, W. –C. Li(李文翠), and A. –H. Lu*(陸安慧), A method for creating microporous carbons with excellent CO2 adsorption capacity and selectivity, ChemSusChem, 2014, 7, 291-298. (影響因子:7.117;)

68.Z. –Y. Jin, A. –H. Lu, Y. –Y. Xu, J. –T. Zhang, W. –C. Li*(李文翠), Ionic liquid-assisted synthesis of microporous carbon nanosheets for use in high rate and long cycle life supercapacitors, Adv. Mater., 2014, 26, 3700-3705.(影響因子:15.609;)

69.W. –H. Qu, F. Han, A. –H. Lu, C. Xing, M. Qiao, W. –C. Li*(李文翠) a tubular mesoporous carbon cathode in a high energy density non-aqueous lithium ion capacitor: preparation and characterization, J. Mater. Chem. A, 2014, 2, 6549-6557.

70.F. Han, W. -C. Li(李文翠), C. Lei, B. He, K. Oshida, A. –H. Lu*, Selective Formation of Carbon-Coated, Metastable Amorphous ZnSnO3 Nanocubes Containing Mesopores for Use as High-Capacity Lithium-Ion Battery, Small, 2014,10(13), 2637-2644(影響因子:7.514;).

71.Yu-Xin Miao, Lei Shi, Li-Na Cai, W.–C. Li*(李文翠), Alumina hollow microspheres supported gold catalysts for low-temperature CO oxidation: effect of the pretreatment atmospheres on the catalytic activity and stability, Gold Bull., 2014, 47,275-282 (影響因子:1.840).

72.Shuai Wang, Ling Zhang, Fei Han, W.–C. Li(李文翠), Yuan-Yuan Xu, Wen-Hui Qu, and An-Hui Lu*, Diaminohexane-Assisted Preparation of Coral-like, Poly(benzoxazine)-Based Porous Carbons for Electrochemical Energy Storage, ACS Appl. Mater. Interfaces 2014, 6, 11101?11109.(影響因子: 5.900)

73.S. Wang, W. -C. Li(李文翠), L. Zhang, Z. -Y. Jin, A. -H. Lu*, Polybenzoxazine-based monodisperse carbon spheres with low-thermal shrinkage and their CO2 adsorption property, J. Mater. Chem. A, 2014, 2(12), 4406-4412.

74.L. –N. Cai, Y. Guo, J. Mi, R. -J. Fan, Y.-Y. Xu, W.-C. Li*(李文翠), Easy synthesis of hierarchically structured porous carbon as electrodes for supercapacitor by using Zn(Ac)2 as difunctional additive, New Carbon Materials, 2014, accepted.(影響因子:1.308)

75.Fei Cheng, Shuai Wang, Chu-Ying Wang, W.–C. Li*(李文翠), Interconnected porous carbon with tunable pore size as a model substrate to confine LiFePO4 cathode material for energy storage, Micropor. Mesopor. Mater. 2015,204,190-196 (影響因子:3.209)

76.Bin He, W.–C. Li (李文翠)and An-Hui Lu*, High nitrogen-content carbon nanosheets formed using the Schiff-base reaction in a molten salt medium as effi cient anode materials for lithium-ion batteries, J. Mater. Chem. A 2015, 3, 579-585.

77.Xiang-Qian Zhang, Wei Dong, An-Hui Lu, and W.–C. Li*(李文翠), Rational Design of Novel Mesoporous Carbon Electrodes with High Mass Loading for Binder-Free Supercapacitors, Energy Technology, 2014, DOI: 10.1002/ente.201402161.

2015

78.Xiang-Qian Zhang, Yue Guo and W.–C. Li*(李文翠),Efficient Removal of Hexavalent Chromium by High Surface Area Al2O3 Rods, RSC Advances 2015.

獲獎記錄

承擔國家自然科學基金、973國家重大計畫專項子課題、教育部博士點基金、教育部重點計畫、與英國的國際合作及國內企事業委託項目多項。

1.“一種納米氧化鋅摻雜的高比表面積塊體多孔炭的製備方法”發明專利, 已授權, ZL 200810011961.7, 2010

2.“一種常壓下製備超疏水性二氧化矽氣凝膠的方法”發明專利, 已授權, ZL 201010205734.5, 2010

3.“一種尺寸和形貌可控的單分散納米空心炭球的製備方法”發明專利, 已授權, ZL 201010010087.2, 2010

4. “快速合成塊體分等級孔道結構含氮多孔炭的方法”發明專利, 已授權, ZL 200910220488.8, 2009

5.“高能量密度不對稱超級電容器及其製備方法”發明專利, 已授權, ZL 200910010922.X, 2009

6.“在2.4~3.0V工作電壓下使用的水相超級電容器及其製備方法”發明專利, 已授權, ZL 200910012011.0, 2009

7.“一種廉價製備納米材料炭氣凝膠的方法”發明專利, 已授權, ZL 03133416.4, 2005

在讀學生人數。

19,其中3位博士生獲國家獎學金,1位獲博士生學術之星稱號,2位碩士的論文獲遼寧省優秀學位論文。

畢業學生人數。

20人,出國3。歡迎有志向、誠實、勤奮、踏實的同學報考,為學生提供富有人性化的學習和工作環境,為學生的未來發展提供充足的空間。

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