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庞文宁, 丁海兵, 尚仁成. 生物有机分子构像分析的新探针研究[J]. 原子核物理评论, 2002, 19(Suppl): 10-12. DOI: 10.11804/NuclPhysRev.19.S1.010
引用本文: 庞文宁, 丁海兵, 尚仁成. 生物有机分子构像分析的新探针研究[J]. 原子核物理评论, 2002, 19(Suppl): 10-12. DOI: 10.11804/NuclPhysRev.19.S1.010
PANG Wen-ning, DING Hai-bing, SHANG Ren-cheng. Study New Probing on Conformation of Biologic Organic Molecule[J]. Nuclear Physics Review, 2002, 19(Suppl): 10-12. DOI: 10.11804/NuclPhysRev.19.S1.010
Citation: PANG Wen-ning, DING Hai-bing, SHANG Ren-cheng. Study New Probing on Conformation of Biologic Organic Molecule[J]. Nuclear Physics Review, 2002, 19(Suppl): 10-12. DOI: 10.11804/NuclPhysRev.19.S1.010

生物有机分子构像分析的新探针研究

Study New Probing on Conformation of Biologic Organic Molecule

  • 摘要: 通过轨道电子密度分布研究生物有机分子构像 ,可获得区别于现有研究手段所能得到的结果。对基于 (e,2e)散射实验的电子动量谱学作为一种生物有机分子构像分析的方法进行了探讨。 The electron momentum spectroscopy (EMS) technique is a powerful tool to inspect molecular electronic structure,and this experimental orbital imaging is in mome ntum space rather than the more familiar position space.Both the one-electron bi nding energies and momentum distributions consistently image the distortions and topological changes that molecular orbitals undergo due to torsion of the carbo n backbone,and thereby exhibit variations that can be traced experimentally.....

     

    Abstract: The electron momentum spectroscopy (EMS) technique is a powerful tool to inspect molecular electronic structure,and this experimental orbital imaging is in mome ntum space rather than the more familiar position space.Both the one-electron bi nding energies and momentum distributions consistently image the distortions and topological changes that molecular orbitals undergo due to torsion of the carbo n backbone,and thereby exhibit variations that can be traced experimentally.....

     

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