Chinese Journal of Magnetic Resonance ›› 2002, Vol. 19 ›› Issue (2): 107-114.
DING Shang-wu1,2, YE Chao-hui2, CHEN Cheng-Lung1, CHOU Chin-H sin1
Received:2001-11-07
Revised:2001-12-04
Published:2002-06-05
Online:2002-06-05
Supported by:国科会(NSC)(台湾)自然处研究基金资助(NSC-90-2113 -M-110-011);中科院“百人计划”资助(2001CB309309).
CLC Number:
DING Shang-wu, YE Chao-hui, CHEN Cheng-Lung, CHOU Chin-Hsin. THE VALIDITY OF HIGH TEMPERATURE APPROXIMATION IN NMR SPECTROSCOPY AND ITS RELATED PROBLEMS[J]. Chinese Journal of Magnetic Resonance, 2002, 19(2): 107-114.
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| [1] Warren W S, He Q, McCoy M, et al. J Chem Phys[J],1992, 96: 1659.[2] Warren W S, Richter W, Andreotti A H, et al. Science[J], 1993, 262: 2005.[3] He Q, Richter W, Vathyam S, et al. J Chem Phys[J], 1993, 98: 6779.[4] Warren W S, Lee S, Richter W, et al. Chem Phys Lett[J], 1995, 247: 207 .[5] Jeener J, Vlassenbroek A, Broekaert P. J Chem Phys[J], 1995, 103: 1309.[6] Jeener J, Vlassenbroek A, Broekaert P. J Chem Phys[J], 1995, 103: 1309.[7] Richter W, Lee S, Warren W S, et al. Science[J], 1995, 267: 655.[8] Lee S, Richter W, Vathyam S, et al. J Chem Phys[J], 1996, 105: 874.[9] Lee S, Richter W, Vathyam S, et al. J Chem Phys[J], 1996, 105: 874.[10] Levitt M. Concepts Magn Reson[J], 1996, 8: 77.[11] Vathyam S, Lee S, Warren W S. Science[J], 1996, 272: 92.[12] Bowtell R, Robyr P. Phys Rev Lett[J], 1996, 76: 4971.[13] Robyr P, Bowtell R. J Chem Phys[J], 1997, 106: 467.[14] Ahn S, Warren W S, Lee S. J Magn Reson[J], 1997, 128: 114.[15] Warren W S, Ahn S. J Chem Phys[J], 1998, 108: 1313.[16] Ahn S, Lisitza N, Warren W S. J Magn Reson[J], 1998, 133: 266.[17] Warren W S, Ahn S, Mescher M, et al. Science[J], 2998, 281: 247. [18] Kimmich R, Ardelean I. J Chem Phys[J], 1999, 110: 3708.[19] Jeener J. J Chem Phys[J], 2000, 112: 5091.[20] Lin Y Y, Ahn S, Murali N, et al. Phys Rev Lett[J], 2000, 85: 3732.[21] Richter W, Richter M, Warren W S, et al. Mag Reson Imag[J], 2000, 18: 489.[22] Chen Z, Zhong J. J Chem Phys[J], 2001, 114: 5642.[23] Ardelean I, Kossel E, Kimmich R. J Chem Phys[J], 2001, 114: 8520.[24] Ramanathan C, Bowtell R. J Chem Phys[J], 2001, 114: 10854.[25] Ding S. in preparation.[26] Lacelle S. Adv Magn Reson & Opt Reson[J], 1991, 16: 173. |
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