Wu J S, Spence J C H
Department of Physics and Astronomy, Arizona State University, Tempe, AZ 85287-1504, USA.
Acta Crystallogr A. 2003 Sep;59(Pt 5):495-505. doi: 10.1107/S0108767303016866. Epub 2003 Aug 29.
Energy-filtered quantitative electron diffraction at liquid nitrogen temperature has been used to examine the atomic structure and bonding of metastable alpha-Cu phthalocyanine crystals. Three theoretical methods (kinematic, kinematic with excitation errors and Bloch wave) were employed for the intensity calculations. The Bloch-wave method was found to account for dynamical effects by greatly reducing the residual factor between experimental and simulated results. A new method for calculating electron scattering factors for partially charged ions is proposed and the sensitivity of electron diffraction to charge transfer is discussed. The atomic charge states were analyzed for alpha-Cu phthalocyanine using a charge cloud model in which the Gaussian bond charge is positioned along the bonds. Spot patterns were collected in the Kohler mode at two beam energies to reduce error. Using the best-fitting model, a deformation charge-density map is produced and compared to the neutral-atom model. From this, the main features of atomic charge transfer in the alpha-Cu phthalocyanine structure can be seen in the (010) plane.
在液氮温度下进行的能量过滤定量电子衍射已被用于研究亚稳α-铜酞菁晶体的原子结构和键合。采用了三种理论方法(运动学方法、考虑激发误差的运动学方法和布洛赫波方法)进行强度计算。发现布洛赫波方法通过大大降低实验结果与模拟结果之间的残余因子来考虑动力学效应。提出了一种计算部分带电离子电子散射因子的新方法,并讨论了电子衍射对电荷转移的敏感性。使用电荷云模型分析了α-铜酞菁的原子电荷状态,其中高斯键电荷沿键定位。在两种束流能量下以科勒模式收集斑点图案以减少误差。使用最佳拟合模型生成变形电荷密度图并与中性原子模型进行比较。由此,可以在(010)平面中看到α-铜酞菁结构中原子电荷转移的主要特征。