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chenfire木虫 (著名写手)
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最牛的80后科学家,论文被引次数已超过3500次!
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加州大学伯克利分校的Ali Javey教授, 80年出生,25岁获得斯坦福大学博士学位, Ali Javey, Ph.D. Address: University of California at Berkeley EECS Department Citizenship: U.S. Year of Birth: 1980 Academic Positions 2006 - present Assistant Professor Electrical Engineering and Computer Sciences University of California at Berkeley Education 2005 Ph.D., Physical Chemistry Stanford University (Palo Alto, CA) 2001 B.S., Chemistry Old Dominion University (Norfolk, VA) Research Interests high performance nanoelectronics; flexible electronics and sensors; nanofabrication; energy harvesting and conversion; programmable matter Awards and Honors • 2009 National Academy of Sciences Award for Initiatives in Research • 2008 National Science Foundation CAREER Award • 2008 U.S. Frontiers of Engineering Speaker, National Academy of Engineering • 2004 Election to Harvard Society of Fellows, Junior Fellow • 2004 Materials Research Society Graduate Student Gold Award • 2003-2005 Semiconductor Research Corporation Peter Verhofstadt Fellowship • 2001 Hampton Roads Section of the American Chemical Society (ACS) Award to the Outstanding Graduating Senior in Chemistry • 1998-2001 Tidewater Builders Association Scholarship Book: 1. A. Javey, J. Kong (Eds.), “Carbon Nanotube Electronics”, (Springer, New York, 2009). Publications: (>3,500 journal citations, ISI Web of Knowledge, 4/2009) 1. J. C. Ho, A. C. Ford, Y.-L. Chueh, P. Leu, O. Ergen, K. Takei, G. Smith, P. Majhi, J. Bennett, A. Javey. "Nanoscale doping of InAs via sulfur monolayers", Applied Physics Letters, in press, 2009. 2. H. Ko, Z. Zhang, Y.-L. Chueh, J. C. Ho, J. Lee, R. S. Fearing, and A. Javey. "Wet and dry adhesion properties of self-selective nanowire connectors", Advanced Functional Materials, in press, 2009. 3. Z. Fan, H. Razavi, J. Do, A. Moriwaki, O. Ergen, Y.-L. Chueh, P. W. Leu, J. C. Ho, T. Takahashi, L. A. Reichertz, S. Neale, K. Yu, M. Wu, J. W. Ager, A. Javey. "Three dimensional nanopillar array photovoltaics on low cost and flexible substrates", Nature Materials, 8, 648-653, 2009. 4. Z. Fan, J. C. Ho, T. Takahashi, R. Yerushalmi, K. Takei, A. C. Ford, Y.-L. Chueh, A. Javey. "Towards the Development of Printable Nanowire Electronics and Sensors," Advanced Materials, in press, 2009. 5. R. Kapadia, H. Ko, Y.-L. Chueh, J. C. Ho, T. Takahashi, Z. Zhang, A. Javey. "Hybrid core-multi-shell nanowire forests for electrical connector applications," Applied Physics Letters, in press, 2009. 6. T. Takahashi, K. Takei, J. C. Ho, Y.-L. Chueh, Z. Fan, A. Javey. "Monolayer Resist for Patterned Contact Printing of Aligned Nanowire Arrays.” Journal of the American Chemical Society, 131 (6), 2102-2103, 2009.3 7. J. C. Ho, R. Yerushalmi, G. Smith, P. Majhi, J. Bennett, J. Halim, V. Faifer, A. Javey. "Wafer-Scale, Sub-5 nm Junction Formation by Monolayer Doping and Conventional Spike Annealing", Nano Letters, 9 (2), 725–730, 2009. 8. A. C. Ford, J. C. Ho, Y.-L. Chueh, Y.-C. Tseng, Z. Fan, J. Guo, J. Bokor, A. Javey. "Diameter-Dependent Electron Mobility of InAs Nanowires", Nano Letters, 9 (1), 360-365, 2009. 9. A. Javey, Z. Fan, J. C. Ho, “Roll Printing of Nanowires for Integrated Device and Sensor Arrays.” National Academy of Engineering, The Bridge, 38 (4),18-24, 2009. (invited review) 10. Z. Fan, A. Javey. “Solar cells on curtains”, Nature Materials, 7, 835 - 836, 2008 (news & views). 11. Y.-L. Chueh, A. C. Ford, J. C. Ho, Z. A. Jacobson, Z. Fan, C.-Y. Chen, L.-J. Chou, and A. Javey. “Formation and Characterization of NixInAs/InAs Nanowire Heterostructures by Solid Source Reaction.” Nano Letters, 8 (12), 4528–4533, 2008. 12. A. Javey. “The 2008 Kavli Prize in Nanoscience: Carbon Nanotubes”, ACS Nano, 2008, 2, 1329-1335, 2008. 13. Z. Fan, J. C. Ho, Z. A. Jacobson, H. Razavi, A. Javey, "Large Scale, Heterogeneous Integration of Nanowire Arrays for Image Sensor Circuitry", Proceedings of the National Academy of Sciences (PNAS), 105, 11066–11070, 2008. 14. A. C. Ford, J. C. Ho, Z. Fan, O. Ergen, V. Altoe, S. Aloni, H. Razavi, A. Javey, Synthesis, Contact Printing, and Device Characterization of Ni-Catalyzed, Crystalline InAs Nanowires", Nano Research, 1, 32-39, 2008. 15. L.-W. Hung, Z. A. Jacobson, Z. Ren, A. Javey, and C. T.-C. Nguyen, “Capacitative Transducer Stretching via ALD-Enabled Partial-Gap Filling”, Proceedings of Hilton Head 2008. 16. R. Yerushalmi, J. C. Ho, Z. Fan, A. Javey, "Phosphine Oxide Monolayers on SiO2 Surfaces", Angew. Chem. Int. Ed., 47, 4440-4442, 2008. [selected as a "hot paper" by the editor]. 17. J. C. Ho, R. Yerushalmi, Z. A. Jacobson, Z. Fan, R. L. Alley, A. Javey, "Controlled nanoscale doping of semiconductors via molecular monolayers", Nature Materials, 7 (1), 62-67, 2008. [featured in C&EN] 18. Z. Fan, J. C. Ho, Z. A. Jacobson, R. Yerushalmi, R. L. Alley, H. Razavi, A. Javey, "Wafer-Scale Assembly of Highly Ordered Semiconductor Nanowire Arrays by Contact Printing", Nano Letters, 8(1), 20-25, 2008. [cover article]. 19. R. Yerushalmi, Z. A. Jacobson, J. C. Ho, Z. Fan, A. Javey, “Large scale, highly ordered assembly of nanowire parallel arrays by differential roll printing”, Applied Physics Letters, 91, 203104, 2007. [also, selected for November 26, 2007 issue of Virtual Journal of Nanoscale Science & Technology]. 20. R. Yerushalmi, J. Ho, Zachery Jacobson, A. Javey, “Generic Nanomaterial Positioning by Carrier and Stationary Phase Design,” Nano Letters, 7, 2764- 2768, 2007. 21. A. Javey, S. Nam, R. S. Friendman, H. Yan, C. M. Lieber, "Layer-by-Layer Assembly of Nanowires for Three-Dimensional, Multifunctional Electronics", Nano Letters, 7, 773 -777, 2007. 22. G. Zhang, X. Wang, X. Li, Y. Lu, A. Javey, H. Dai, “Carbon Nanotubes: From Growth, Placement, and Assembly Control to 60 mV/decade and Sub-60 mV/decade Tunnel Transistors”, IEEE IEDM Technical Digest, 2006. 23. H. Dai, A. Javey, E. Pop, D. Mann, Y. Lu, “Electrical Transport Properties and Field-Effect Transistors of Carbon Nanotubes”, NANO, 1, 1-4, 2006. (invited) 24. A. Javey, "Nano for Macro: Integration of Nanomaterials for High Performance and Flexible Macro-Electronics", Nanotechnology Law & Business, 3 (1), 2006. (invited) 25. A. Javey, H. Dai, “Carbon nanotube Electronics.” Proceedings of IEEE VLSI Design, Jan 2006. (invited) 26. A. Javey, H. Dai, “Regular Arrays of 2 nm Metal Nanoparticles for Deterministic Synthesis of Nanomaterials.” Journal of the American Chemical Society, 127, 11942-11943, 2005. 27. W. Kim, A. Javey, R. Tu, H. Dai, “Electrical Contacts to Carbon Nanotubes Down to 1nm in Diameter”, Applied Physics Letters, 87, 173101, 2005. 28. G. Zhang, D. Mann, L. Zhang, A. Javey, Y. Li, E. Yenilmez, Q. Wang, J. P. McVittie, Y. Nishi, J. Gibbons, H. Dai. "Ultra-high-yield growth of vertical singlewalled carbon nanotubes: Hidden roles of hydrogen and oxygen", Proceedings of the National Academy of Sciences (PNAS), 102 (45), 16141-16145, 2005. 29. J. Guo, S. Hasan, A. Javey, G. Bosman, M. Lundstrom. “Assessment of High- Frequency Performance Potential for Carbon Nanotube Transistors.” IEEE Trans. on Nanotechnology, 4(6), 1536, 2005. 30. A. Javey. “Electrical Characterization and Applications of Individual Single- Walled Carbon Nanotubes.” Ph.D. Thesis, Stanford University, 2005. 31. A. Javey, R. Tu, D. Farmer, J. Guo, H. Dai. “High performance nanotube n-FETs with chemically doped contacts.” Nano Letters, 5, 345-348, 2005. 32. A. Javey, D. Famer, R. Gordon, H. Dai. “Self-aligned 40 nm channel carbon nanotube field-effect transistors with subthreshold swings down to 70 mV/decade.” Proceedings of SPIE - The International Society for Optical Engineering (Quantum Sensing and Nanophotonic Devices II, M. Razeghi, G.J. Brown, eds.), 5732, 14-18, 2005. 33. A. Javey, P. Qi, Q. Wang, H. Dai. “Ten- to 50-nm-long quasi-ballistic carbon nanotube devices obtained without complex lithography.” Proceedings of the National Academy of Sciences (PNAS), 101 (37), 13408-13410, 2004. 34. P. Qi, A. Javey, M. Rolandi, Q. Wang, E. Yenilmez, H. Dai. “Miniature Organic Transistors with Carbon Nanotubes as Quasi-One Dimensional Electrodes.” Journal of the American Chemical Society, 126 (38), 11774-11775, 2004. 35. J. Guo, A. Javey, H. Dai, M. Lundstrom. “Performance Analysis and Design Optimization of Near Ballistic Carbon Nanotube Field-Effect Transistors.” IEEE IEDM Technical Digest, 703, 2004. 36. A. Javey, J. Guo, Q. Wang, D. Mann, M. Lundstrom, H. Dai. “High-Field, Quasi- Ballistic Transport in Short Carbon Nanotubes.” Physical Review Letters, 92 (10), 106804, 2004. 37. A. Javey, J. Guo, D. B. Farmer, Q. Wang, E. Yenilmez, R. G. Gordon, M. Lundstrom, H. Dai. “Self-aligned ballistic molecular transistors and electrically parallel nanotube arrays.” Nano Letters, 4 (7), 1319-1322, 2004. 38. A. Javey, J. Guo, D. B. Farmer, Q. Wang, D. Wang, R. G. Gordon, M. Lundstrom, H. Dai. “Carbon Nanotube Field-Effect Transistors With Integrated Ohmic Contacts and High-k Gate Dielectrics.” Nano Letters, 3 (4), 447-450, 2004. 39. Y. Li, D. Mann, M. Rolandi, W. Kim, A. Ural, S. Hung, A. Javey, J. Cao, D. Wang, E. Yenilmez, Q. Wang, J. F. Gibbons, Y. Nishi and H. Dai. “Preferential growth of semiconducting single-walled carbon nanotubes by a plasma enhanced CVD method.” Nano Letters, 4 (2), 317-321, 2004. 40. Y.C. Tseng, P.Q. Xuan, A. Javey, R. Malloy, Q. Wang, J. Bokor, H. Dai, “Monolithic integration of carbon nanotube devices with silicon MOS technology.” Nano Letters, 4 (1), 123-127, 2004. 41. D. Mann, A. Javey, J. Kong, Q. Wang, H. Dai. “Ballistic Transport in Metallic Nanotubes With Reliable Ohmic Contacts,” Nano Letters, 3(11), 1541-1544, 2003. 42. A. Javey, Q. Wang, W. Kim, H. Dai. “Advancements in Complementary Carbon Nanotube Field-Effect Transistors,” IEDM Technical Digest, 2003. 43. A. Javey, J. Guo, Q. Wang, M. Lundstrom, and H. Dai. “Ballistic Carbon Nanotube Transistors,” Nature, 4(24), 654-657, 2003. 44. D. Wang, Q. Wang, A. Javey, R. Tu, H. Dai, H. Kim, T. Krishnamohan, P. McIntyre, and K. Saraswat, “Germanium nanowire field-effect transistors with SiO2 and high-k HfO2 gate dielectrics.” Applied Physics Letters, 83(12), 2432- 2434, 2003. 45. H. C. Choi, S. Kundaria, D. Wang, A. Javey, Q. Wang, M. Rolandi, and H. Dai. “Efficient Formation of Iron Nanoparticle Catalysts on Silicon Oxide by Hydroxylamine for Carbon Nanotube Synthesis and Electronics.” Nano Letters, 3(2), 157-161, 2003. 46. W. Kim, A. Javey, O. Vermesh, Q. Wang, Y. Li, and H. Dai. “Hysteresis caused by water molecules in carbon nanotube field-effect transistors.” Nano Letters, 3 (2), 193-198, 2003. 47. P. Qi, O. Vermesh, M. Grecu, A. Javey, Q. Wang, H. Dai, S. Peng, KJ Cho. “Toward large arrays of multiplex functionalized carbon nanotube sensors for highly sensitive and selective molecular detection,” Nano Letters, 3(3), 347-35, 2003. 48. A. Javey, H. Kim, M. Brink, Q. Wang, A. Ural, J. Guo, P. McIntyre, P. McEuen, M. Lundstrom, and H. Dai. “High κ dielectrics for advanced carbon nanotube transistors and logic.” Nature Materials, 1 (4), 241-246, 2002. 49. A. Javey, Q. Wang, A. Ural, Y. Li, H. Dai. “Carbon nanotube transistor arrays for multistage complementary logic and ring oscillators.” Nano Letters, 2(9), 929- 932, 2002. 50. J. Guo, S. Datta, M. Lundstrom, M. Brink, P. McEuen, A. Javey, H. Dai, H. Kim, P. McIntyre. “Assessment of Silicon MOS and Carbon Nanotube FET Performance Using a General Theory of Ballistic Transistors.” IEDM Technical Digest, 2002. 51. A. Javey, M. Shim, and H. Dai, “Electrical properties and devices of largediametersingle-walled carbon nanotubes.” Applied Physics Letters, 80(6), 1064-1066, 2002. 52. N. R. Franklin, Q. Wang, T. W. Tombler, A. Javey, M. Shim, H. Dai. “Integration of suspended carbon nanotube arrays into electronic devices and electromechanical systems.” Applied Physics Letters, 81(5), 913-915, 2002. 53. N. R. Franklin, Y. Li, R. J. Chen, A. Javey, and H. Dai, “Patterned growth of single-walled carbon nanotubes on full 4-inch wafers.” Applied Physics Letters, 79(27), 4571-4573, 2001. 54. M. Shim, A. Javey, N. Kam, H. Dai, “Polymer functionalization for air-stable ntypecarbon nanotube field effect transistors.” Journal of the American Chemical Society, 123(46), 11512-11513, 2001. 55. X. Zheng, W. Fu, S. Albin, K. L. Wise, A. Javey, J. B. Cooper, “Self-referencing Raman probes for quantitative analysis.” Applied Spectroscopy, 55(4), 382-388, 2001. [ Last edited by chenfire on 2009-7-30 at 21:10 ] |
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chenfire
木虫 (著名写手)
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