Thakral Priyanka, Bakhshi A K
Department of Chemistry, University of Delhi, Delhi, 110 007, India.
J Comput Aided Mol Des. 2014 Feb;28(2):111-22. doi: 10.1007/s10822-014-9736-0. Epub 2014 Mar 2.
A proficient metaheuristic approach viz., particle swarm optimization coupled with negative factor counting technique and inverse iteration method has been employed for designing novel binary and ternary copolymers based on thiophene, pyrrole and furan skeletons. A comparative study of the electronic structures and conduction properties of neutral heterocyclic copolymers and their benzene substituted analogues is inferred using the band structure results derived from ab-initio Hartree-Fock crystal orbital calculations. The band gap value decreases as a result of substitution on the polymer backbone due to increased quinoid contributions which is expected to enhance the intrinsic conductivity of the resulting copolymers. In general, it has been found that HOMO energies have a more decisive influence than LUMO energies on the relative fraction of constituents of the respective low band gap copolymers. The trends in the electronic properties of the respective copolymers are also verified and discussed with the help of density of states. These results can help streamline scrupulous synthetic efforts providing a potent route for molecular engineering of sustainable and efficient electronic materials.
一种高效的元启发式方法,即结合负因子计数技术和逆迭代方法的粒子群优化算法,已被用于设计基于噻吩、吡咯和呋喃骨架的新型二元和三元共聚物。利用从头算Hartree-Fock晶体轨道计算得出的能带结构结果,对中性杂环共聚物及其苯取代类似物的电子结构和导电性能进行了比较研究。由于醌式贡献增加,聚合物主链上的取代导致带隙值降低,这有望提高所得共聚物的本征电导率。一般来说,已经发现,在各自低带隙共聚物的组分相对比例方面,最高占据分子轨道(HOMO)能量比最低未占分子轨道(LUMO)能量具有更决定性的影响。还借助态密度对各自共聚物的电子性质趋势进行了验证和讨论。这些结果有助于简化细致的合成工作,为可持续和高效电子材料的分子工程提供一条有效途径。