首页> 外文期刊>Journal of nanoparticle research: An interdisciplinary forum for nanoscale science and technology >Organic-inorganic hybrid nanocomposite for enhanced photo-sensing of PFO-DBT:MEH-PPV:PC71BM blend-based photodetector
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Organic-inorganic hybrid nanocomposite for enhanced photo-sensing of PFO-DBT:MEH-PPV:PC71BM blend-based photodetector

机译:有机-无机杂化纳米复合材料,用于增强基于PFO-DBT:MEH-PPV:PC71BM共混物的光电探测器的光敏性

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摘要

The sensing parameters of previously reported PFO-DBT:MEH-PPV:PC71BM ternary blend-based organic photodetector have been improved in the present study. Improvement has been successfully demonstrated by doping TiO2 nanoparticles in the PEDOT:PSS thin film. TiO2 nanoparticles of 50, 100 and 250 nm diameters have initially been dispersed in PEDOT:PSS, and the resulting suspension has been spun coated on glass substrates and subjected to UV/vis and PL study. Thin film of PEDOT:PSS-TiO2 (100 nm) has shown maximum quenching in PL spectra, along with fairly good visible-light absorption. For further studies, 5 wt% TiO2 (100 nm) nanoparticles dispersion in PEDOT:PSS has been utilized for the fabrication of ITO/PEDOT:PSS-TiO2/PFO-DBT:MEH-PPV:PC71BM/Al photodiode. The PEDOT:PSS-TiO2 suspension has been spun coated onto the ITO substrates primarily and annealed to densify the film by vaporizing water contents in the film. A ternary blend of PFO-DBT:MEH-PPV:PC71BM in optimized volumetric ratio has been sequentially spun-cast to serve as a photoactive film. Significantly improved values of the sensing parameters such as responsivity (4 mA/W) and photo-to-dark current ratio (similar to 6.4 x 10(4)) have also been found. Response/recovery times of the fabricated sensor remain almost the same (<1 s) as previously reported for PFO-DBT:MEH-PPV:PC71BM ternary blend.
机译:在本研究中,以前报道的基于PFO-DBT:MEH-PPV:PC71BM三元共混物的有机光电探测器的感测参数已得到改善。通过在PEDOT:PSS薄膜中掺杂TiO2纳米颗粒已成功证明了改进。最初将直径分别为50、100和250 nm的TiO2纳米颗粒分散在PEDOT:PSS中,然后将所得悬浮液旋涂在玻璃基板上,并进行UV / vis和PL研究。 PEDOT:PSS-TiO2(100 nm)薄膜在PL光谱中显示出最大的猝灭,以及相当好的可见光吸收。为了进一步研究,已将PEDOT:PSS中5 wt%的TiO2(100 nm)纳米颗粒分散体用于制造ITO / PEDOT:PSS-TiO2 / PFO-DBT:MEH-PPV:PC71BM / Al光电二极管。首先将PEDOT:PSS-TiO2悬浮液旋涂到ITO基材上,然后进行退火以通过蒸发薄膜中的水分来使薄膜致密。已经按顺序纺丝了具有最佳体积比的PFO-DBT:MEH-PPV:PC71BM的三元共混物,用作光敏膜。还发现传感参数的显着提高的值,例如响应度(4 mA / W)和光暗电流比(类似于6.4 x 10(4))。制成的传感器的响应/恢复时间几乎与先前报道的PFO-DBT:MEH-PPV:PC71BM三元共混物几乎相同(<1 s)。

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