Park On You, Kim Hee Un, Park Jong Baek, Hwang Do-Hoon
J Nanosci Nanotechnol. 2014 Nov;14(11):8225-30. doi: 10.1166/jnn.2014.9887.
(E)-2,2'-Dibromo-7,7'-bis(diphenylamino)-9,9'-bifluorenylidene (BDPABF) was synthesized as a new non-fullerene-type electron acceptor for organic photovoltaic cells. The UV-visible absorption spectra of BDPABF showed two main bands at 319 and 474 nm in a chloroform solution and 320 and 481 nm as a solid thin film. The optical band gap of BDPABF was determined to be 2.34 eV by measuring the onset absorption wavelength of the solid thin film. The ionization potential of BDPABF was determined to be 5.59 eV using photoelectron spectroscopy. The measured lowest unoccupied molecular orbital energy level of BDPABF was - 3.25 eV. Its electron-accepting ability was investigated through a Stern-Volmer quenching experiment. The intensity of the photoluminescence of P3HT dramatically decreased upon the addition of BDPABF. The measured Stern-Volmer quenching constant was 5.3 x 10(4) M(-1). Photovoltaic devices were fabricated using P3HT as the electron donor and BDPABF as the electron acceptor at various composition ratios. The optimized device showed a maximum power conversion efficiency of 0.27% with an open-circuit voltage of 0.71 V, short-circuit current density of 1.29 mA/cm2, and fill factor of 0.29 after thermal annealing at 100 degrees C for 5 min.
合成了(E)-2,2'-二溴-7,7'-双(二苯胺基)-9,9'-联芴叉(BDPABF)作为一种用于有机光伏电池的新型非富勒烯型电子受体。BDPABF在氯仿溶液中的紫外可见吸收光谱在319和474nm处有两个主要吸收带,作为固体薄膜时则在320和481nm处。通过测量固体薄膜的起始吸收波长,确定BDPABF的光学带隙为2.34eV。使用光电子能谱确定BDPABF的电离势为5.59eV。测得BDPABF的最低未占据分子轨道能级为-3.25eV。通过斯特恩-沃尔默猝灭实验研究了其电子接受能力。加入BDPABF后,P3HT的光致发光强度显著降低。测得的斯特恩-沃尔默猝灭常数为5.3×10⁴M⁻¹。以不同的组成比例,使用P3HT作为电子供体和BDPABF作为电子受体制造了光伏器件。优化后的器件在100℃下热退火5分钟后,显示出最大功率转换效率为0.27%,开路电压为0.71V,短路电流密度为1.29mA/cm²,填充因子为0.29。