

固液核磁共振技术及其应用(Pd/Pt/Ru/Rh类有机催化剂‚锂电池‚晶型药物与无定形药物)
欢迎 有MOF、催化、锂电池、药物背景的硕士生和博士生 前来报考.
经历:
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10/2006-11/2009 法国国家高场核磁共振中心‚固体化学与催化实验室 里尔第一大学 (法国) |
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09/1999-07/2006 高分子科学系‚复旦大学 |
论文:
[36]Covariance spectroscopy with a non-uniform and consecutive acquisition scheme for signal enhancement of the NMR experiments‚ Yixuan Li‚1 Qiang Wang‚2* Zhengfeng Zhang‚2 Jun Yang‚2 Bingwen Hu‚1* Qun Chen‚1 Isao Noda3‚ Feng Deng2*‚ JMR‚ 2012‚ accepted.
[35]A facile route to prepare a mesoporous palladium coordination polymer as recyclable heterogeneous catalyst‚
Siyong Zhang‚ Ming Shen‚ Qinghua Liu‚ Bingwen HU*‚ Qun Chen*‚ Hexing Li*‚ JP Amoureux‚ Dalton Trans.‚ 2012‚ accepted.
[34]Influence of the Pd(II) Coordination Model on the Catalytic Performance of Pd–PPh2–SBA-15 in C–C Bond Forming Reactions‚ Jianlin Huang†‚ Meitao Wang†‚ Siyong Zhang‡‚ Bingwen Hu*‡‚ and Hexing Li*†‚
2011‚ J. Phys. Chem. C‚ Article ASAP‚ DOI: 10.1021/jp208047g.
[33] Rotor-synchronized dipolar-filter sequence at fast MAS in solid-state NMR
Qing-Hua Liu‚ Chao Ma‚ Bing-Wen Hu*‚ Qun Chen*‚ Julien Trebosc‚ Olivier Lafon and Jean-Paul Amoureux*‚
Journal of Magnetic Resonance ‚ accepted‚ 2011.
[32] Bingwen Hu*; Olivier Lafon‚ Julien Trébosc‚ Qun Chen‚ Jean-Paul Amoureux*‚Broad-band homo-nuclear correlations assisted by 1H irradiation for
bio-molecules in very high magnetic field at fast and ultra-fast MAS frequencies‚Journal of Magnetic Resonance ‚ accepted. 2011.
[31]Segmental Dynamics of PEO/LiClO4 Complex Crystals and Its Influence on the Li+ Ion Transportation in the Crystal Lattices: A 13C Solid State NMR Approach" by Qun Chen‚ Yangwen Gao‚ Bingwen Hu‚ Yefeng Yao and Qun Chen‚Chemistry - A European Journal‚ 2011‚ http://dx.doi.org/10.1002/chem.201100788
[30] Olivier Lafon‚ Julien Trébosc‚ Bingwen Hu‚Gaël De Paëpe and Jean-Paul Amoureux‚Observing 13C-13C connectivities at high magnetic field and very high spinning frequencies‚ Chem. Comm. Accepted.
[1]. Zhang‚ S.-Y.; Wang‚ M.-T.; Liu‚ Q.-H.; Hu‚ B.-W.*; Chen‚ Q.*; Li‚ H.-X.*; Amoureux‚ J.-P.‚ Phys. Chem. Chem. Phys. 2011‚ 10.1039/C0CP01191F.
[2]. Wang‚ Q.; Lu‚ X.; Lafon‚ O.; Trebosc‚ J.; Deng‚ F.; Hu‚ B.; Chen‚ Q.; Amoureux‚ J.-P.‚ Phys. Chem. Chem. Phys. 2011‚ 10.1039/c0cp01907k.
[3]. Chen‚ L.; Wang‚ Q.; Hu‚ B.; Lafon‚ O.; Trébosc‚ J.; Deng‚ F.; Amoureux‚ J.-P.‚ Phys. Chem. Chem. Phys. 2010‚ 12‚ 9395-9405.
[4]. Trébosc‚ J.; Lafon‚ O.; Hu‚ B.; Amoureux‚ J.-P.‚ Chemical Physics Letters 2010‚ 496‚ 201-207
[5]. Wang‚ Q.; Hu‚ B.; Lafon‚ O.; Trebosc‚ J.; Deng‚ F.; Amoureux‚ J. P.‚ Journal of Magnetic Resonance 2010‚ 203‚ (1)‚ 113-128.
[6]. Hu‚ B.; Wang‚ Q.; Lafon‚ O.; Trebosc‚ J.; Deng‚ F.; Amoureux‚ J. P.‚ Journal of Magnetic Resonance 2009‚ 198‚ (1)‚ 41-48.
[7]. Lafon‚ O.; Wang‚ Q.; Hu‚ B.; Vasconcelos‚ F.; Trebosc‚ J.; Cristol‚ S.; Deng‚ F.; Amoureux‚ J. P.‚ J. Phys. Chem. A 2009‚ 113 (46)‚ 12864-12878.
[8]. Wang‚ Q.; Hu‚ B.; Fayon‚ F.; Trebosc‚ J.; Legein‚ C.; Lafon‚ O.; Deng‚ F.; Amoureux‚ J.-P.‚ Physical Chemistry Chemical Physics 2009‚ 11‚ 10391-10395.
[9]. Amoureux‚ J. P.; Hu‚ B.; Trebosc‚ J.; Wang‚ Q.; Lafon‚ O.; Deng‚ F.‚ Solid State Nuclear Magnetic Resonance 2009‚ 35‚ (1)‚ 19-24.
[10]. Wang‚ Q.; Hu‚ B.; Lafon‚ O.; Trebosc‚ J.; Deng‚ F.; Amoureux‚ J. P.‚ Journal of Magnetic Resonance 2009‚ 200‚ (2)‚ 251-260.
[11]. Lafon‚ O.; Wang‚ Q.; Hu‚ B.; Trebosc‚ J.; Deng‚ F.; Amoureux‚ J. P.‚ Journal of Chemical Physics 2009‚ 130‚ (1)‚ 014504.
[12]. Hu‚ B.; Delevoye‚ L.; Lafon‚ O.; Trebosc‚ J.; Amoureux‚ J. P.‚ Journal of Magnetic Resonance 2009‚ 200‚ (2)‚ 178-188.
[13]. Amoureux‚ J. P.; Trebosc‚ J.; Delevoye‚ L.; Lafon‚ O.; Hu‚ B.; Wang‚ Q.‚ Solid State Nuclear Magnetic Resonance 2009‚ 35‚ (1)‚ 12-18.
[14]. Hu‚ B.; Amoureux‚ J. P.; Trébosc‚ J.; Hafner‚ S.‚ Journal of Magnetic Resonance 2008‚ 192‚ (1)‚ 8-16.
[15]. Amoureux‚ J. P.; Trebosc‚ J.; Hu‚ B.; Halpern-Manners‚ N.; Antonijevic‚ S.‚ Journal of Magnetic Resonance 2008‚ 194‚ (2)‚ 317-320.
[16]. Amoureux‚ J. P.; Wang‚ Q.; Hu‚ B.; Lafon‚ O.; Trebosc‚ J.; Deng‚ F.‚ Chemical Communications 2008‚ (48)‚ 6525-6527.
[17]. Hu‚ B.; Trebosc‚ J.; Amoureux‚ J. P.‚ Journal of Magnetic Resonance 2008‚ 192‚ (1)‚ 112-122.
[18]. Amoureux‚ J. P.; Hu‚ B.; Trebosc‚ J.‚. Journal of Magnetic Resonance 2008‚ 193‚ (2)‚ 305-307.
[19]. Ruan‚ Q. X.; Zhou‚ P.; Hu‚ B. W.; Ji‚ D.‚ FEBS Journal 2008‚ 275‚ (2)‚ 219-232.
[20]. Hu‚ B.; Amoureux‚ J. P.; Trébosc‚ J.; Deschamps‚ M.; Tricot‚ G.‚ Journal of Chemical Physics 2008‚ 128‚ (13)‚ 134502-134502(8).
[21]. Hu‚ B.; Amoureux‚ J. P.; Trébosc‚ J.‚ Solid State Nuclear Magnetic Resonance 2007‚ 31‚ (4)‚ 163-168.
[22]. Trebosc‚ J.; Hu‚ B.; Amoureux‚ J. P.; Gan‚ Z.‚ Journal of Magnetic Resonance 2007‚ 186‚ (2)‚ 220-227.
[23]. Hu‚ B. W.; Zhou‚ P.; Noda‚ I.; Ruan‚ Q. X.‚ Journal of Physical Chemistry B 2006‚ 110‚ (36)‚ 18046-18051.
[24]. Hu‚ B. W.; Zhou‚ P.; Noda‚ I.; Zhao‚ G. Z.‚ Analytical Chemistry 2005‚ 77‚ (23)‚ 7534-7538.
[25]. Zong‚ X. H.; Zhou‚ P.; Shao‚ Z. Z.; Chen‚ S. M.; Chen‚ X.; Hu‚ B. W.; Deng‚ F.; Yao‚ W. H.‚ Biochemistry 2004‚ 43‚ (38)‚ 11932-11941.
[26]. Hu‚ B. W.; Zhao‚ X. Z.; Zong‚ X. H.; Zhou‚ P.‚. Acta Physico - Chimica Sinica 2006‚ 22‚ (2)‚ 167-171.
[27]. Zhou‚ P.; Hu‚ B.‚ Chinese Journal of Magnetic Resonance 2009‚ 26‚ 17-26