首页  课题组概况  研究方向  研究成果  成员介绍  实验设备  组内活动  合作交流  联系我们 
2010年以前论文

 2024年发表论文 
 2023年发表论文 
 2022年发表论文 
 2021年发表论文 
 2020年发表论文 
 2019年发表论文 
 2018年发表论文 
 2017年发表论文 
 2016年发表论文 
 2015年发表论文 
 2014年发表论文 
 2013年发表论文 
 2012年发表论文 
 2011年发表论文 
 2010年以前论文 
 专利 
 专题著作 

 

2010年以前论文
您的位置: 首页>>研究成果>>2010年以前论文

2010年以前发表论文汇总

2010(9)

65. 孙涛,王光辉,陆安慧,李文翠*,磁性氧化铁纳米颗粒的研究进展,化工进展,2010,29(7):1241-1250

64. A.–H. Lu*(陆安慧), J.–J. Nitz, M. Comotti, C. Weidenthaler, K. Schlichte, C. W. Lehmann, O. Terasaki, F. Schüth, Spatially and size selective synthesis of Fe–based nanoparticles on ordered mesoporous supports as highly active and stable catalysts for ammonia decomposition,J. Am. Chem. Soc.2010, 132, 14152–14162.

63. G.–P. Hao, W.–C. Li, S. Wang, S. Zhang, A.–H. Lu*(陆安慧), Tubular structured ordered mesoporous carbon as an efficient sorbent for the removal of dyes from aqueous solutions, Carbon 2010, 48, 3330–3339.

62. M. Feyen, C. Weidenthaler, F. Schüth, A.–H. Lu*(陆安慧),Regioselectively controlled synthesis of colloidal mushroom nanostructures and their hollow derivatives, J. Am. Chem. Soc. 2010, 132, 6791–6799.

61. M. Feyen, C. Weidenthaler, F. Schüth, A.–H. Lu*(陆安慧), Synthesis of structurally stable colloidal composites as magnetically recyclable acid catalysts, Chem. Mater. 2010, 22, 2955–2961.

60. A.–H. Lu*(陆安慧), W.–C. Li, 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.

59. G.–P. Hao, W.–C. Li, D. Qian, A.–H. Lu*(陆安慧), Rapid synthesis of nitrogen–doped porous carbon monolith for CO2capture,Adv. Mater., 2010, 22, 853–857.(ESI高引论文)

58. Y. Liu, H. Tuysuz, C. –J. Jia, M. Schwickardi, R. Rinaldi, A. –H. Lu*(陆安慧), W. Schmidt, F. Schüth, From glycerol to allyl alcohol: iron oxide catalyzed dehydration and consecutive hydrogen transfer, Chem. Commun. 2010, 46, 1238–1240.

57. C.–J. Jia, Y. Liu, W. Schmidt, A.–H. Lu(陆安慧), F. Schüth, Small–sized HZSM–5 zeolite as highly active catalyst for gas phase dehydration of glycerol to acrolein, J. Catal. 2010, 269, 71–79.

2009(2)

56. P. Branton,* A.–H. Lu(陆安慧), F. Schüth, The effect of carbon pore structure on the adsorption of cigarette smoke vapour phase compounds, Carbon 2009, 47, 1005–1011.

55. G.–H. Wang, W.–C. Li, K.–M. Jia, B. Spliethoff, F. Schüth, A.–H. Lu*(陆安慧), Shape and size controlleda–Fe2O3nanoparticles as supports for gold–catalysts: Synthesis and influence of support shape and size on catalytic performance, Appl. Catal. A 2009, 364, 42–47.

2008(3)

54. A.–H. Lu*(陆安慧), B. Spliethoff, F. Schüth, Aqueous synthesis of ordered mesoporous carbon via self–assembly catalyzed by amino acid, Chem. Mater. 2008, 20, 5314–5319.

53. A.–H. Lu*(陆安慧), H. Tuysuz, F. Schüth, Synthesis of ordered mesoporous carbon containing highly dispersed copper sulphur compounds in the carbon framework via a nanocasting route, Micropor. Mesopor. Mater. 2008, 111, 117–123.

52. P. A. Bazuła, A.–H. Lu*(陆安慧), J. Nitz, F. Schüth, Surface and pore structure modification of ordered mesoporous carbons via a chemical oxidation approach, Micropor. Mesopor. Mater. 2008, 108, 266–275.

2007(4)

51. A.–H. Lu(陆安慧), E. L. Salabas, F. Schüth*, Magnetic nanoparticles: synthesis, protection, functionalization and application,Angew. Chem. Int. Ed. 2007, 46, 1222–1244. (invited review)(ESI高引论文)

50. A.–H. Lu(陆安慧), W.–C. Li, Z.–S. Hou, F. Schüth*, Molecular level dispersed Pd clusters in the carbon walls of ordered mesoporous carbon as a highly selective alcohol oxidation catalyst, Chem. Commun. 2007, 1038–1040.

49. S. Polarz*, A. Orlov, F. Schüth, A.–H. Lu(陆安慧), Preparation of high–surface–area zinc oxide with ordered porosity, different pore sizes, and nanocrystalline walls, Chem. Eur. J. 2007, 13, 592–597.

48. J.–H. Smatt, A.–H. Lu(陆安慧), S. Backlund, M. Linden, Rational control of the micro/mesoporosity of multimodally porous carbon monoliths synthesized by nanocasting, Stud. Surf. Sci. Catal. 2007, 165, 369–372.

2006(6)

47. A.–H. Lu(陆安慧), F. Schüth, Nanocasting: A versatile strategy to create nanostructured porous materials, Adv. Mater. 2006, 18, 1793–1805. (invited review)(ESI高引论文)

46. A.–H. Lu(陆安慧), W.–C. Li, W. Schmidt, F. Schüth*, Low temperature oxidative template removal from SBA-15 using MnO4-solution and carbon replication of the mesoporous silica product, J. Mater. Chem. 2006, 16, 3396–3401.

45. A. –H. Lu(陆安慧), W. –C. Li, W. Schmidt, F. Schüth*, Fabrication of hierarchically structured carbon monoliths via self-binding and salt templating, Micropor. Mesopor. Mater. 2006, 95, 187–192.

44. W. -C. Li, M. Comotti, A. –H. Lu(陆安慧), F. Schüth*, Nanocast mesoporous MgAl2O4spinel monoliths as support for highly active gold CO oxidation catalyst, Chem. Commun. 2006, 1772–1774.

43. A. –H. Lu*(陆安慧), W. Li, E. –L. Salabas, B. Spliethoff, F. Schüth, Low Temperature catalytic pyrolysis for the synthesis of high surface area, nanostructured graphitic carbon, Chem. Mater. 2006, 18,2086–2094.

42. C. Weidenthaler, A.–H. Lu(陆安慧), W. Schmidt, F. Schüth, X–Ray photoelectron spectroscopic studies of PAN–based ordered mesoporous carbons (OMC), Micropor. Mesopor. Mater. 2006, 88, 238–243.

2005(12)

41. A.–H. Lu(陆安慧), W. –C. Li, N. Muratova, B. Spliethoff, F. Schüth, Evidence for C–C bond cleavage by H2O2in a mesoporous CMK-5 type carbon at room temperature, Chem. Commun. 2005, 5184–5186.

40. W.–C. Li, A.–H. Lu(陆安慧), R. Palkovits, W. Schmidt, B. Spliethoff, F. Schüth, Hierarchically structured monolithic silicalite-1 consisting of crystallized nanoparticles and its performance in the Beckmann rearrangement of cyclohexanone oxime, J. Am. Chem. Soc. 2005, 127, 12595–12600.

39. W.–C. Li, A.–H. Lu(陆安慧), C. Weidenthaler, R. Goddard, H. Bongard, F. Schüth, Growth of single crystal α-Al2O3nanofibers on a carbon aerogel substrate, J. Mater. Chem. 2005,15, 2993–2996.

38. A.–H. Lu(陆安慧), W. Schmidt, W. Kiefer, F. Schüth, High surface area mesoporous SiC synthesized via nanocasting and carbothermal reduction process, J. Mater. Sci. 2005, 40, 5091–5093.

37. W. –C. Li, A.–H. Lu(陆安慧), F. Schüth, Preparation of monolithic carbon aerogels and investigation of their pore interconnectivity by a nanocasting pathway, Chem. Mater. 2005, 17, 3620–3626.

36. A.–H. Lu(陆安慧), W. Schmidt, S. Tatar, B. Spliethoff, J. Popp, W. Kiefer, F. Schüth, Formation of amorphous carbon nanotubes on ordered mesoporous silica support, Carbon 2005, 43, 1811–1814.

35. A.–H. Lu(陆安慧), W. –C. Li, N. Matoussevitch, B. Spliethoff, HB. Pnnermann, F. Schüth, Highly stable carbon–protected cobalt nanoparticles and graphite shells, Chem. Commun. 2005, 98–100. (hot paper)

34. A.–H. Lu(陆安慧), J.–H. Smatt, M. Linden, Combined surface and volume templating of highly porous nanocasted carbon monoliths, Adv. Funct. Mater. 2005, 15, 865–871.

33. A.–H. Lu(陆安慧), F. Schüth, Nanocasting pathways to create ordered mesoporous solids,CR. Chim. 2005, 8, 609–620. (invited review)

32. A.–H. Lu(陆安慧), W.–C. Li, W. Schmidt, F. Schüth, Template synthesis of large pore ordered mesoporous carbon, Micropor. Mesopor. Mater. 2005, 80, 117–128.

31. W.–C. Li, A.–H. Lu(陆安慧), W. Schmidt, F. Schüth, High surface area mesoporous glassy alumina with controllable pore size by nanocasting from carbon areogels, Chem. Eur. J. 2005, 11, 1658–1664.

30. W.–C. Li, A.–H. Lu(陆安慧), C. Weidenthaler, F. Schüth, Hard–templating pathway to create mesoporous magnesium oxide, Chem. Mater. 2004, 16, 5676–5681.

1999-2004(29)

29. A.–H. Lu(陆安慧), W. Schmidt, B. Spliethoff, F. Schüth, Synthesis and characterization of nanocasted silica NCS-1 using CMK-3 as a template, Chem. Eur. J. 2004, 10, 6085–6092.

28. A.–H. Lu(陆安慧), W. –C. Li, A. Kiefer, W. Schmidt, E. Bill, G. Fink, F. Schüth, Fabrication of magnetically separable mesostructured silica with open pore system, J. Am. Chem. Soc. 2004, 126, 8616–8617.

27. A.–H. Lu(陆安慧), W. Schmidt, N. Matoussevitch, HB. Pnnermann, B. Spliethoff, B. Tesche, E. Bill, W. Kiefer, F. Schüth, Nanoengineering of a magnetically separable hydrogenation catalyst, Angew. Chem. Int. Ed. 2004, 43, 4303–4306. (ESI高引论文)

26. A.–H. Lu(陆安慧), W. –C. Li, W. Schmidt, W. Kiefer, F. Schüth, Easy synthesis of an ordered mesoporous carbon with a hexagonally packed tubular structure, Carbon 2004, 42, 2939–2948.

25. A.–H. Lu(陆安慧), J.–H. Smatt, S. Backlund, M. Linden, Easy and flexible preparation of nanocasted carbon monoliths exhibiting a multimodal hierarchical porosity, Micropor. Mesopor. Mater. 2004, 72, 59–65.

24. A.–H. Lu(陆安慧), A. Kiefer, W. Schmidt, F. Schüth, Synthesis of polyacrylonitrile–based ordered mesoporous carbon with tunable pore structures,Chem. Mater. 2004, 16, 100–103. (影响因子: 8.238) (ESI高引论文)

23. A.–H. Lu(陆安慧), J.–H. Smatt, M. Linden, F. Schüth, Synthesis of carbon monoliths with a multi–modal pore system by a one step impregnation technique. New Carbon Materials 2003, 18, 265–270.

22. A.–H. Lu(陆安慧), W. Schmidt, B. Spliethoff, F. Schüth, Synthesis of ordered mesoporous carbon with bimodal pore system and high pore volume. Adv. Mater. 2003, 15, 1602–1606.

21. A.–H. Lu(陆安慧), W. Schmidt, F. Schüth, Simplified novel synthesis of ordered mesoporous carbon with bimodal pore system. New Carbon Materials 2003, 18, 181–185.

20. W. Shen, A.–H. Lu(陆安慧), J. Zheng, Z. Qin, J. Wang, Y. Zhang, Development of mesopore in activated carbon by catalytic steam activation over yttrium and cerium oxides. J. Mater. Sci. Lett. 2003, 22, 635–637.

19. F. Schüth, T Czuryskiewicz, F. Kleitz, M. Linden, A.–H. Lu(陆安慧), J. Rosenholm, W. Schmidt, A. Taguchi, Expanding horizons of mesoporous materials to non–siliceous systems. Stud. Surf. Sci. Catal. 2003, 146, 399–406.

18. A.–H. Lu(陆安慧), W. Schmidt, A. Taguchi, B. Spliethoff, B. Tesche, F. Schüth, Taking nanocasting one step further: Replicating CMK-3 as a silica material. Angew. Chem. Int. Ed. 2002, 41, 3489–3492.

17. A.–H. Lu(陆安慧), J. Zheng. Microstructures of PAN–ACF modified by catalytic benzene deposition. Carbon, 2002, 40, 1353–1361.

16. W. Li, A.–H. Lu(陆安慧), S. Guo, Control of mesoporous structure of aerogels derived from cresol–formaldehyde. J. Colloid Interf. Sci. 2002, 254, 153–157.

15. A.–H. Lu(陆安慧), J. Zheng. Study of microstructure of high–surface–area polyacrylonitrile activated carbon fiber. J. Colloid Interf. Sci. 2001, 236, 369–374.

14. W. Li, A.–H. Lu(陆安慧), S. Guo, Characterization of the microstructures of organic and carbon aerogels based upon mixed cresol–formaldehyde. Carbon 2001, 39, 1989–1994.

13. A.–H. Lu(陆安慧), J Zheng, M.–Z. Wang, Studies on microstructures of PAN–ACF modified by catalytic CVD, Chem. J. Chinese U. 2001, 22, 1546–1550.

12. A.–H. Lu(陆安慧), W. Li, J. Zheng, Preparation of PAN–based molecular sieve ACF and study of surface structure by XPS, Acta Phys–Chim. Sin. 2001, 17, 216–221.

11. 陆安慧,郑经堂,用于分离CH4/CO2的分子筛型PAN–ACF的制备及性能,材料研究学报,2002, 16, 188–192.

10. 沈健,袁兴东,陆安慧,李国辉,周敬来,活性炭纤维上负载杂多酸及催化性能,抚顺石油学院学报,2002, 22(3), 15–18.

9. 陆安慧,郑经堂,王茂章,高比表面积PAN–ACF的吸附与孔结构解析,高分子材料科学与工程, 2001, 17(5), 62–66.

8. 陆安慧,郑经堂,王茂章,炭分子筛的研究进展,化工进展,2001, 4, 12–18.

7. 陆安慧,郑经堂,PAN基ACFs对甲醇吸附性能的研究,炭素技术,2001, 3, 7–10.

6. 李文翠,陆安慧,郭树才,溶胶–凝胶法制备间甲酚甲醛炭气凝胶的研究,燃料化学学报, 2000, 28(4), 332.

5. 陆安慧,郑经堂,王茂章,樊严贞,H–K法研究ACFs的微结构,新型炭材料,2000, 1, 23–27.

4. 吴铭铂,陆安慧,郑经堂,樊严贞.由CO2作活化剂制活性炭织物的孔结构和吸附性能研究,新型炭材料,1999, 2, 54–58.

3. 陆安慧,郑经堂,王茂章,ACFs二次活化制分子筛炭织物的前驱体,炭素技术, 1999, 6, 13–17.

2. 陆安慧,申文忠,郑经堂,KOH二次活化制备富含中孔的PAN–ACF,新型炭材料, 2001, 16, 32–36.

1. 陆安慧,郑经堂,活性炭纤维,合成纤维工业,1999, 2, 34–37.

其它论文(2)

1. Comotti, M.,Li, W. C., Spliethoff, B., Schüth, F. (2006). Support effect in high activity gold catalysts for CO oxidation.Journal of the American Chemical Society,128(3), 917-924. (ESI高引论文)

2. Jing-He Yang, Geng Sun, Yongjun Gao, Huabo Zhao, Pei Tang, Juan Tan,An-Hui Lu and Ding Ma*. Direct catalytic oxidation of benzene to phenol over metal-free graphene-based catalyst[J]. Energy & Environmental Science, 2013, 6(3): 793-798. (ESI高引论文)



先进能源材料与催化团队 版权所有

本站部分内容来源于网络,版权归原作者或来源机构所有,如果涉及任何版权方面的问题请及时和我们联系,我们将尽快妥善处理!

推荐使用 Internet Explorer 浏览器浏览本站