利用胶体处理有机光电探测器进行高灵敏度水污染监测

Tengfei Li, Gangjian Hu, Hua Wu, Li Ding, Jianqi Zhang, Mengjie Sun, Yawen Li, Zesheng Liu, Yuchuan Shao, Yanjun Fang, Yan Qiao, Liang Shen, Yuze Lin
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引用次数: 0

摘要

水是可持续发展目标的核心,而洁净水的风险管理往往需要对污染物进行现场监测,因此非常需要具有高检测率的便携式光检测器。新兴的便携式有机光电探测器(OPDs)具有内在灵活性和重量轻的特点,是水污染原位监测的理想候选产品,但其比检出率(D*)往往低于 1013 琼斯,无法满足低于污染物排放安全限值(约 0.01-0.1 毫克/升)的监测要求。在这里,我们展示了由致密有序的聚合物薄膜通过胶体加工制成的 D* 高达 4.1 × 1013 琼斯的 OPD,这归功于它们比通过传统溶液加工沉积的 OPD 具有更低的能量无序性和更少的陷阱。胶体处理的 OPD(CP-OPD)在可见光到近红外光下的可探测光强弱至接近 0.1 pW cm-2,与优质商用硅光电二极管相当,并压倒了一些广泛使用的型号。所开发的 CP-OPD 成功实现了对水中痕量染料污染物/叶绿素 A 类似物的高灵敏度和精确监测,其检测限为 0.02/0.05 mg l-1(低于排放/富营养化标准),超过了无法对低于标准的浓度做出有效响应的商用硅光电二极管。在已报道的便携式光电探测器中,胶体处理使 OPD 具有最高的检测率,使 CP-OPD 在原位监测水中痕量污染物方面优于传统方法。原位实时水污染监测为检测水污染物提供了一种快速、便捷的方法,但高灵敏度检测器的开发仍具有挑战性。利用胶体加工方法制造的便携式有机光电探测器可实现对水中痕量污染物的高灵敏度和精确监测。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Highly sensitive water pollution monitoring using colloid-processed organic photodetectors

Highly sensitive water pollution monitoring using colloid-processed organic photodetectors
Water stands at the heart of the Sustainable Development Goals, and risk management for clean water often requires in situ monitoring of contaminants, where a portable photodetector with high detectivity is highly desired. The emerging portable organic photodetectors (OPDs) with intrinsic flexibility and light weight, which are promising candidates for in situ water pollution monitoring, often exhibit unsatisfactory specific detectivity (D*) lower than 1013 Jones, failing to meet monitoring requirements set below safety limits (~0.01–0.1 mg l−1) for pollutant discharge. Here we present OPDs with D* as high as 4.1 × 1013 Jones made from dense and ordered polymer films via colloid processing, attributed to their substantially lower energy disorder and fewer traps than those deposited via traditional solution processing. Detectable light intensities as weak as approaching 0.1 pW cm−2 of colloid-processed OPDs (CP-OPDs) at visible to near-infra-red light are achieved, on par with the premium commercial Si photodiode and overwhelming some widely used models. Highly sensitive and accurate monitoring of trace dye pollutants/chlorophyllin A analogue in water with a detection limit of 0.02/0.05 mg l−1 (below the discharge/eutrophication standard) is successfully accomplished through the developed CP-OPDs, surpassing the commercial Si photodiode that cannot effectively respond to the concentration below the standard. Colloid processing endows OPDs with the highest detectivity among reported portable photodetectors and makes CP-OPDs superior in in situ monitoring trace contaminants in water relative to traditional methods. In situ real-time water pollution monitoring provides a fast and convenient way to detect water pollutants, but the development of detectors with high sensitivity is still challenging. Portable organic photodetectors fabricated with a colloid processing approach achieve highly sensitive and accurate monitoring of trace pollutants in water.
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