Influence of moiety sequence on the performance of small molecular photovoltaic materials†
Abstract
The purpose of this work is to study the impact of moiety sequence in the chemical structure of small molecular photovoltaic materials on their basic properties and photovoltaic performance. For this aim, two isomeric compounds, namely BDT(ThBTTh)2 and BDT(BTTh2)2, have been designed and synthesized by exchanging benzothiadiazole and thiophene positions with a structural variation. As compared with BDT(BTTh2)2, BDT(ThBTTh)2 possesses a lower melting point, a blue-shifted absorption spectrum in solution, and slightly lower-lying highest occupied and lowest unoccupied molecular orbitals. More interestingly, the hole mobility of the BDT(ThBTTh)2 neat film is 0.1 cm2 Vā1 sā1, which is three-orders of magnitude larger than that of BDT(BTTh2)2. Furthermore, these two compounds display significantly different photovoltaic performance, 4.53% for BDT(ThBTTh)2versus 1.58% for BDT(BTTh2)2 in terms of their power conversion efficiency.