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通过卟啉官能化提高了石墨烯的光响应和化学响应,用于制备柔性、透明、灵敏的传感器。

Improved photo- and chemical-responses of graphene via porphyrin-functionalization for flexible, transparent, and sensitive sensors.

机构信息

School of Mechanical Engineering, Yonsei University, 50 Yonsei-ro, Seodaemun-gu, Seoul 03722, Republic of Korea.

出版信息

Nanotechnology. 2019 May 24;30(21):215501. doi: 10.1088/1361-6528/ab048d. Epub 2019 Feb 5.

DOI:10.1088/1361-6528/ab048d
PMID:30721895
Abstract

The functionalization of graphene with organic molecules is beneficial for the realization of high-performance graphene sensors because functionalization can provide enhanced functionalities beyond the properties of pristine graphene. Although various types of sensors based on organic-graphene hybrids have been developed, the functionalization processes have poor thickness-controllability/reliability or require post-processing, and sensor applications rely on conventional, rigid substrates such as SiO/Si. Here, a flexible and transparent metalloporphyrin (MPP)-graphene hybrid for sensitive UV detection and chemical sensing is demonstrated. MPP, which provides strong light absorption, redox chemistry, and catalytic activity, is simply deposited onto graphene via one-step evaporation. Optical and electronic characterizations confirm that the graphene is successfully functionalized by MPP while maintaining its outstanding electronic properties. The MPP-functionalization greatly improves the photo- and chemical-sensing performances of the graphene, resulting in over 200% enhanced sensitivities for both UV light (365 nm) and toluene. Simultaneously, the MPP-graphene sensor exhibits no considerable change in electrical resistance under bending conditions, and remarkable optical transmittance in the visible range. On the basis of the excellent performances of the MPP-graphene hybrid, including high sensitivities, flexibility, transparency, and the ease and cost-effectiveness of the MPP-functionalization, it will be a promising candidate for flexible and transparent sensor applications.

摘要

通过有机分子对石墨烯进行功能化有利于实现高性能石墨烯传感器,因为功能化可以提供超出原始石墨烯性能的增强功能。尽管已经开发出各种基于有机-石墨烯杂化的传感器,但功能化过程的厚度可控性/可靠性差或需要后处理,并且传感器应用依赖于传统的刚性基底,如 SiO2/Si。在这里,展示了一种用于灵敏紫外检测和化学传感的柔性透明金属卟啉(MPP)-石墨烯杂化材料。MPP 提供了强的光吸收、氧化还原化学和催化活性,可通过一步蒸发简单地沉积在石墨烯上。光学和电子特性证实,石墨烯通过 MPP 成功地进行了功能化,同时保持了其出色的电子性能。MPP 的功能化极大地提高了石墨烯的光电和化学传感性能,导致对紫外光(365nm)和甲苯的灵敏度提高了 200%以上。同时,在弯曲条件下,MPP-石墨烯传感器的电阻没有明显变化,并且在可见光范围内具有显著的透光率。基于 MPP-石墨烯杂化材料的优异性能,包括高灵敏度、柔韧性、透明度以及 MPP 功能化的简便性和成本效益,它将成为柔性透明传感器应用的有前途的候选材料。

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