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Anomalous phenomenon in pyridyl-imidazoperylene H_2gas sensor

机译:吡啶基-咪唑啉H_2气体传感器中的异常现象

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Organic pigments were once extensively investigated as a photoconductor 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 are involved in the research and development on H_2 gas sensors utilizing high proton affinity of the pyridyl rings integrated in the title compound (PIP). An anomalous phenomenon in PIP-based H_2 sensors has been observed that the sensor current increases even after H_2 interruption. Two N-sites in PIP are found to be involved in the protonation: N~1 at the pyridyl ring and N~2 at the five-membered ring. Among these, N~1 is especially sensitive to water moisture as well as H_2; whereas N~2 behaves as an ordinary proton acceptor as found in other pyridylring-integrted pigments. The anomalous effect is found to be due to the former N~1 behavior.
机译:曾经广泛研究了有机颜料作为电子照相感光体的光电导体。如今,它们在彩色拷贝的着色剂以及光盘,电致发光,FET等材料中起着重要的作用。在这里,我们报道了有机颜料在H_2气体传感器中的另一种新颖应用。我们参与了利用集成在标题化合物(PIP)中的吡啶环的高质子亲和力的H_2气体传感器的研究和开发。已观察到基于PIP的H_2传感器出现异常现象,即使在H_2中断后,传感器电流也会增加。发现在PIP中有两个N位参与质子化:吡啶基环上的N〜1和五元环上的N〜2。其中,N〜1对水份和H_2尤其敏感。而N〜2的行为就像普通的质子受体一样,在其他掺有吡啶基环的颜料中也可以发现。发现异常效应是由于以前的N〜1行为引起的。

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