World Premier International (WPI) Research Center for Materials Nanoarchitectonics (MANA), National Institute for Materials Science (NIMS), 1-1 Namiki, Tsukuba 305-0044, Japan.
Materials Science and Engineering, Graduate School of Pure and Applied Science, University of Tsukuba, Tennodai 1-1-1 Tsukuba, Ibaraki 305-8571, Japan.
Sensors (Basel). 2018 May 21;18(5):1640. doi: 10.3390/s18051640.
Porphyrin is one of the most promising materials for realizing a practical artificial olfactory sensor system. In this study, we focus on non-substituted porphyrins—porphines—as receptor materials of nanomechanical membrane-type surface stress sensors (MSS) to investigate the effect of center metals on gas sensing. By omitting the substituents on the tetrapyrrole macrocycle of porphyrin, the peripheral interference by substituents can be avoided. Zinc, nickel, and iron were chosen for the center metals as these metalloporphines show different properties compared to free-base porphine. The present study revealed that iron insertion enhanced sensitivity to various gases, while zinc and nickel insertion led to equivalent or less sensitivity than free-base porphine. Based on the experimental results, we discuss the role of center metals for gas uptake from the view point of molecular interaction. We also report the high robustness of the iron porphine to humidity, showing the high feasibility of porphine-based nanomechanical sensor devices for practical applications in ambient conditions.
卟啉是实现实用人工嗅觉传感器系统最有前途的材料之一。在这项研究中,我们专注于未取代的卟啉——卟吩作为纳米机械膜式表面应力传感器(MSS)的受体材料,以研究中心金属对气体传感的影响。通过省略卟啉的四吡咯大环上的取代基,可以避免取代基的外围干扰。选择锌、镍和铁作为中心金属,因为与游离碱卟啉相比,这些金属卟啉表现出不同的性质。本研究表明,铁的插入增强了对各种气体的敏感性,而锌和镍的插入导致的敏感性与游离碱卟啉相当或更低。基于实验结果,我们从分子相互作用的角度讨论了中心金属在气体吸收中的作用。我们还报告了铁卟啉对湿度的高稳定性,表明基于卟啉的纳米机械传感器器件在实际环境条件下具有高可行性。