State Key Laboratory of Gansu Advanced Non-ferrous Metal Materials, Lanzhou University of Technology, Lanzhou 730050, Gansu, China.
Int J Mol Sci. 2013 Mar 8;14(3):5461-81. doi: 10.3390/ijms14035461.
To understand the role of the conjugate bridge in modifying the properties of organic dye sensitizers in solar cells, the computations of the geometries and electronic structures for 10 kinds of tetrahydroquinoline dyes were performed using density functional theory (DFT), and the electronic absorption and fluorescence properties were investigated via time dependent DFT. The population analysis, molecular orbital energies, radiative lifetimes, exciton binding energies (EBE), and light harvesting efficiencies (LHE), as well as the free energy changes of electron injection ( ) and dye regeneration ( ) were also addressed. The correlation of charge populations and experimental open-circuit voltage (Voc) indicates that more charges populated in acceptor groups correspond to larger Voc. The elongating of conjugate bridge by thiophene units generates the larger oscillator strength, higher LHE, larger absolute value of , and longer relative radiative lifetime, but it induces the decreasing of EBE and . So the extending of conjugate bridge with thiopene units in organic dye is an effective way to increase the harvest of solar light, and it is also favorable for electron injection due to their larger . While the inversely correlated relationship between EBE and LHE implies that the dyes with lower EBE produce more efficient light harvesting.
为了理解连接桥在修饰太阳能电池中有机染料敏化剂性质方面的作用,使用密度泛函理论(DFT)对 10 种四氢喹啉染料的结构和电子结构进行了计算,并通过时间相关的 DFT 研究了它们的电子吸收和荧光性质。还进行了电子注入( )和染料再生( )的自由能变化、电荷分布、分子轨道能量、辐射寿命、激子结合能(EBE)和光捕获效率(LHE)等方面的分析。电荷分布与实验开路电压(Voc)的相关性表明,受体基团中聚集的电荷越多,Voc 越大。噻吩单元延长共轭桥会产生更大的振子强度、更高的 LHE、更大的绝对值 和更长的相对辐射寿命,但会导致 EBE 和 减小。因此,在有机染料中用噻吩单元扩展共轭桥是增加太阳能捕获的有效途径,而且由于较大的 ,有利于电子注入。而 EBE 和 LHE 之间的负相关关系表明,EBE 较低的染料产生更有效的光捕获。