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Abnormal effect in hydrogen gas sensors based upon pyridylimidazonaphthalene

机译:基于吡啶基咪唑萘的氢气传感器的异常效应

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Organic pigments were once extensively investigated as photoconductors for the electrophotographic photoreceptor. Nowadays, they play an important role as colorants for color copies as well as materials for optical discs, electroluminescence, FET etc. Here, we report another novel application of organic pigments for H_2 gas sensors. We have previously developed a H_2 gas sensor that utilizes a high proton affinity of diketodipyridylpyrrolopyrrole. We extended our system to other pigments such as perylene-imides with pyridyl rings. Then, we encountered an anomalous effect in pyridyl-imidazoperylene(PIP) that the sensor current increases even after shut-off of H_2. In the present investigation, a similar compound called pyridylimidazonaphthalene (PIN) has been tackled in order to systematically interpret the anomalous effect in PIP and PIN. As a result, the two N atoms in the pyridylimidazo group are responsible for the effect. Furthermore, PIP is found to be quite inert to H_2O and H_2. This makes a string difference between PIN and PIP which is closely linked to the sensitivity of the H_2 sensor.
机译:有机颜料曾被广泛研究作为电子照相感光体的光电导体。如今,它们发挥着颜色拷贝的着色剂的重要作用以及光盘,电致发光,FET等的材料。在这里,我们报告了对H_2气体传感器的有机颜料的另一种新颖的应用。我们以前开发了一种H_2气体传感器,其利用Diketodyridyl吡咯的高质子亲和力。我们将我们的系统扩展到其他颜料,例如Peryly-Imides与吡啶基环。然后,我们在吡啶基 - 咪唑烯烃(PIP)中遇到了异常的效果,即即使在关闭H_2之后,传感器电流也会增加。在本研究中,已经解决了一种类似的化合物,以便系统地解释PIP和销中的异常作用。结果,吡啶基咪唑基的两种原子是效果的原因。此外,发现PIP对H_2O和H_2非常惰性。这使得PIN和PIP之间的字符串差异与H_2传感器的灵敏度密切相关。

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