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ELECTRONIC ENERGY BAND STRUCTURE OF MOLECULAR CRYSTALS MCI·(TCNQ)_2 AND ITS RELATIONSHIP WITH THE ELECTRICAL CONDUCTION

ELECTRONIC ENERGY BAND STRUCTURE OF MOLECULAR CRYSTALS MCI·(TCNQ)_2 AND ITS RELATIONSHIP WITH THE ELECTRICAL CONDUCTION
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摘要 The structure of electronic energy bands, electric charge distribution and the amount of charge transfer of molecular crystals 1-MCI·(TCNQ)_2 (Ⅰ) and 2-MCI· (TCNQ)_2 (Ⅱ) have been studied. The results are: (ⅰ) The dominant contributions to the electrical conductivities for crystals Ⅰ and Ⅱ are from TCNQ molecular columns, and the charge carriers are electrons. (ⅱ) The electrical conduction is mainly due to the hopping of charge carriers between the seats of lattice. (ⅲ) The considerable difference of the electrical conductivities between crystals Ⅰ and Ⅱ is due to the differences between (a) the concentrations of charge carriers n_(AⅠ)~C= 0.9988-|e|/cell and n_(AⅡ)~C=0.0340-|e|/cell; (b) the widths of the energy bands △E_(AⅠ)^(LU)=0.88 eV and △E_(AⅡ)~LU=0.040 eV; (c) the first derivative of E with respect to k, (dE/dk)_(K_FAⅠ)^(LU)=0.27 eV· and (dE/dk)_(K_FAⅡ)~LU=0.0048 eV·; and (d) the difference of energy barriers for the hopping of charge carriers ∈_Ⅱ-∈Ⅰ=2.5-8.8 kJ/mol. The structure of electronic energy bands, electric charge distribution and the amount of charge transfer of molecular crystals 1-MCI·(TCNQ)<sub>2</sub> (Ⅰ) and 2-MCI· (TCNQ)<sub>2</sub> (Ⅱ) have been studied. The results are: (ⅰ) The dominant contributions to the electrical conductivities for crystals Ⅰ and Ⅱ are from TCNQ molecular columns, and the charge carriers are electrons. (ⅱ) The electrical conduction is mainly due to the hopping of charge carriers between the seats of lattice. (ⅲ) The considerable difference of the electrical conductivities between crystals Ⅰ and Ⅱ is due to the differences between (a) the concentrations of charge carriers n<sub>AⅠ</sub><sup>C</sup>= 0.9988-|e|/cell and n<sub>AⅡ</sub><sup>C</sup>=0.0340-|e|/cell; (b) the widths of the energy bands △E<sub>AⅠ</sub><sup>LU</sup>=0.88 eV and △E<sub>AⅡ</sub><sup>L</sup>U=0.040 eV; (c) the first derivative of E with respect to k, (dE/dk)<sub>K<sub>F</sub>AⅠ</sub><sup>LU</sup>=0.27 eV· and (dE/dk)<sub>K<sub>F</sub>AⅡ</sub><sup>L</sup>U=0.0048 eV·; and (d) the difference of energy barriers for the hopping of charge carriers ∈<sub>Ⅱ</sub>-∈Ⅰ=2.5-8.8 kJ/mol.
机构地区 Institute of Chemistry
出处 《Science China Chemistry》 SCIE EI CAS 1990年第10期1163-1171,共9页 中国科学(化学英文版)
基金 Project supported by the National Natural Science Foundation of China.
关键词 structure of electronic energy bands energy bands and the electrical conductivities molecular crystal MIC·(TCNQ)_2 structure of electronic energy bands energy bands and the electrical conductivities molecular crystal MIC·(TCNQ)<sub>2</sub>
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