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具有有机和无机组分功能反转的结晶微孔有机硅用于室温气体传感。

Crystalline Microporous Organosilicates with Reversed Functionalities of Organic and Inorganic Components for Room-Temperature Gas Sensing.

机构信息

Department of Physics and Earth Sciences, University of Ferrara , via G. Saragat 1, 44122, Ferrara, Italy.

Eni Spa, San Donato Milanese Research Center, via F. Maritano 26, 20097, San Donato Milanese, Italy.

出版信息

ACS Appl Mater Interfaces. 2017 Jul 26;9(29):24812-24820. doi: 10.1021/acsami.7b02122. Epub 2017 Jul 14.

DOI:10.1021/acsami.7b02122
PMID:28657706
Abstract

A deepened investigation on an innovative organic-inorganic hybrid material, referred to as ECS-14 (where ECS = Eni carbon silicates), revealed the possibility to use them as gas sensors. Indeed, among ECS phases, the crystalline state and the hexagonal microplateletlike morphology characteristic of ECS-14 seemed favorable properties to obtain continuous and uniform films. ECS-14 phase was used as functional material in screen-printable compositions and was thus deposited by drop coating for morphological, structural, thermal, and electrical characterizations. Possible operation at room temperature was investigated as technological progress, offering intrinsic safety in sensors working in harsh or industrial environments and avoiding high power consumption of most common sensors based on metal oxide semiconductors. Electrical characterization of the sensors based on ECS-14 versus concentrations of gaseous analytes gave significant results at room temperature in the presence of humidity, thereby demonstrating fundamental properties for a good quality sensor (speed, reversibility, and selectivity) that make them competitive with respect to systems currently in use. Remarkably, we observed functionality reversal of the organic and inorganic components; that is, in contrast to other hybrids, for ECS-14 the functional site has been ascribed to the inorganic phase while the organic component provided structural stability to the material. The sensing mechanism for humidity was also investigated.

摘要

对一种名为 ECS-14(其中 ECS = Eni 碳硅酸盐)的新型有机-无机杂化材料进行了深入研究,结果表明它有可能被用作气体传感器。事实上,在 ECS 相中,结晶状态和 ECS-14 特有的六方微板状形态似乎是获得连续和均匀薄膜的有利特性。ECS-14 相被用作可丝网印刷组合物中的功能材料,并通过滴落涂层进行沉积,以进行形态、结构、热和电特性的研究。作为技术进步,探索在室温下进行操作具有内在的安全性,使传感器在恶劣或工业环境中工作,并避免大多数基于金属氧化物半导体的常用传感器的高功耗。基于 ECS-14 的传感器对气态分析物浓度的电特性研究在存在湿度的情况下在室温下给出了显著的结果,从而证明了它们具有良好质量传感器的基本特性(速度、可逆性和选择性),使它们在与当前使用的系统相比时具有竞争力。值得注意的是,我们观察到有机和无机成分的功能反转;也就是说,与其他杂化物相反,对于 ECS-14,功能位点归因于无机相,而有机成分则为材料提供了结构稳定性。还研究了湿度感测机制。

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