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DFT approach on stability and conductance of nine different polyyne and cumulene molecules

机译:九种不同多膜和挤压分子稳定性和电导的DFT方法

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Cumulene molecules are one of the main candidates for the use as molecular wires. Low bond length alternation (BLA) values are one of the main attractive property of cumulene molecules as it leads to high conductivity, whereas stability under normal conditions is the main problem. The study is aimed at achieving stable molecules with low BLA values by forcing cumulene structure in polyynes through substitution. Hence, we considered symmetric LCC molecules of n core carbon atoms (n = 4-12) with nine different terminal groups substitution such as hydrogen terminated polyynes (H[n]), phenyl terminated polyynes (Ph[n]), pyridine-capped polyynes Py[n], 3, 5-diphenyl pyridyl terminated polyynes (Py*[n]) their hydrogenated forms (H-Py[n] and H-Py*[n]), oxygen substituted phenyl terminated polyynes (O=Ph[n]) and 2, 4, 6-trimethylphenyl capped cumulenes (Mes[n]). The BLA values, transport barrier, excitation energy, reorganisation energy, energy gap and vertical and adiabatic ionisation energy were analysed to find the suitable molecule for molecular wires.
机译:Cumulene分子是用作分子线的主要候选者之一。低键长度交替(BLA)值是模量分子的主要吸引性之一,因为它导致高导电性,而正常情况下的稳定性是主要问题。该研究旨在通过替换通过替代来迫使多肾上腺系结构来实现具有低BLA值的稳定分子。因此,我们认为N核碳原子的对称LCC分子(n = 4-12),含有九个不同的末端基团,例如氢封端的多褐色(H [N]),苯基封端的多炔(pH [N]),吡啶封端聚合物Py [n],3,5-二苯基吡啶基封端的多炔(Py * [n])其氢化形式(H py [n]和H-py * [n]),氧取代的苯基封端的多炔(O = pH值[n])和2,4,6-三甲基苯基封端(MES [n])。分析了BLA值,运输屏障,激发能量,重组能量,能量隙和垂直和绝热和绝热和绝热和绝热和绝热和绝热和绝热和绝热和绝热和绝热和绝热和绝热和绝热和绝热。

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