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国家自然科学基金(21273124)

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Strain induced polymorphism and band structure modulation in low-temperature 2,7-dioctyl[1]benzothieno[3,2-b][1]benzothiophene single crystal
2017年
Organic semiconductors are inherently soft,making it possible to increase their mobilities by strains.Such a unique feature can be exploited directly in flexible electronics for improved device performance.The 2,7-dioctyl[1]benzothieno[3,2-b][1]-benzothiophene derivative,C8-BTBT is one of the best small-molecule hole transport materials.Here,we demonstrated its band structure modulation under strains by combining the non-equilibrium molecular dynamics simulations and first-principles calculations.We found that the C8-BTBT lattice undergoes a transition from monoclinic to triclinic crystal system at the temperature below 160 K.Both shear and uniaxial strains were applied to the low-temperature triclinic phase of C8-BTBT,and polymorphism was identified in the shear process.The band width enhancement is up to 8%under 2%of compressive strain along the x direction,and 14%under 4%of tensile strain along the y direction.The band structure modulation of C8-BTBT can be well related to its herringbone packing motifs,where the edge to face and edge to edge pairs constitute two-dimensional charge transport pathways and their electronic overlaps determine the band widths along the two directions respectively.These findings pave the way for utilizing strains towards improved performance of organic semiconductors on flexible substrates,for example,by bending the substrates.
Jianfeng ChenWen ShiYuqian JiangDong WangZhigang Shuai
关键词:苯并噻吩单晶结构
有机材料热电性质的第一性原理计算被引量:1
2012年
本文介绍了作者在有机材料热电性质的第一性原理计算方面取得的进展。提出了一套组合算法,在玻尔兹曼输运理论框架下,应用形变势模型得到电子弛豫时间,结合第一性原理的能带结构计算,得到电子的电导、热导以及赛贝克系数,从而可以不依赖于任何经验参数,预测材料的热电优值。作者对P3HT单链的热电性质做了研究,结果表明在室温下,导电高分子具有作为优良热电材料的潜能。
石文王冬帅志刚
关键词:形变势弛豫时间
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