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Oligothiophene Interlayer Effect on Photocurrent Generation for Hybrid TiO2/P3HT Solar Cells

机译:寡噻吩中间层对TiO2 / P3HT杂化太阳能电池光电流产生的影响

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A series of conjugated 3-hexylthiophene derivatives with a cyanoacrylic acid group has been prepared with conjugation length from one up to five thiophene units (IT— 5T). The UV—vis spectra, photoluminescence spectra, electrochemical data and DFT calculations show lowering of LUMO energies and red-shift of absorption into the visible as the thiophene chain length increases. TiO2/P3HT solar cells were prepared with prior functionalization of the TiO2 surface by IT—ST and studies include cells using undoped P3HT and using P3HT doped with H-TFSI. Without H-TFSI doping, photocurrent generation occurs from both the oligothiophene and P3HT. Doping the P3HT with H- TFSI quenches photocurrent generation from excitation of P3HT, but enables very effective charge extraction upon excitation of the oligothiophene. In this case, photocurrent generation increases with the light harvesting ability of IT—5T leading to a highest efficiency of 2.32% using ST. Overall, we have shown that P3HT can act in either charge generation or in charge collection, but does not effectively perform both functions simultaneously, and this illustrates a central challenge in the further development of TiO2/P3HT solar cells.
机译:已经制备了具有氰基丙烯酸基团的一系列共轭的3-己基噻吩衍生物,其共轭长度为一个至五个噻吩单元(IT-5T)。 UV-vis光谱,光致发光光谱,电化学数据和DFT计算表明,随着噻吩链长的增加,LUMO能量降低,吸收红移到可见光。 TiO2 / P3HT太阳能电池是通过IT-ST预先对TiO2表面进行功能化而制备的,研究包括使用未掺杂P3HT和使用掺杂H-TFSI的P3HT的电池。如果没有H-TFSI掺杂,则低聚噻吩和P3HT都会产生光电流。用H-TFSI掺杂P3HT可以终止P3HT激发产生的光电流,但是在激发寡聚噻吩后能够非常有效地提取电荷。在这种情况下,光电流的产生随着IT-5T的光收集能力而增加,从而导致使用ST的最高效率为2.32%。总的来说,我们已经证明P3HT可以在电荷产生或电荷收集中起作用,但不能同时有效地执行这两种功能,这说明了TiO2 / P3HT太阳能电池的进一步发展面临的主要挑战。

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