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Institution of Metal-Organic Frameworks as a Highly Sensitive and Selective Layer In-Field Integrated Soil-Moisture Capacitive Sensor. | LitMetric

Institution of Metal-Organic Frameworks as a Highly Sensitive and Selective Layer In-Field Integrated Soil-Moisture Capacitive Sensor.

ACS Appl Mater Interfaces

Functional Materials Design, Discovery, and Development Research Group (FMD3), Advanced Membranes and Porous Materials Center (AMPM), Division of Physical Sciences and Engineering (PSE), King Abdullah University of Science and Technology (KAUST), Thuwal 23955-6900, Saudi Arabia.

Published: February 2023

AI Article Synopsis

  • Global industrialization and population growth are increasing pressure on environmental resources, particularly water and food, highlighting the need for better irrigation management and advanced soil-moisture monitoring technologies.
  • The introduction of porous metal-organic frameworks (MOFs) as receptor layers in capacitive sensors shows promising results, with Cr--MOF-1 exhibiting the highest sensitivity for soil-moisture detection compared to other materials.
  • Cr--MOF-1 demonstrates exceptional performance in clayey soil, achieving a sensitivity of approximately 450% and a response time of 500 seconds, indicating the significant potential of MOFs in soil-moisture sensing applications.

Article Abstract

The ongoing global industrialization along with the notable world population growth is projected to challenge the global environment as well as pose greater pressure on water and food needs. Foreseeably, an improved irrigation management system is essential and the quest for refined chemical sensors for soil-moisture monitoring is of tremendous importance. Nevertheless, the persisting challenge is to design and construct stable materials with the requisite sensitivity, selectivity, and high performance. Here, we report the introduction of porous metal-organic frameworks (MOFs), as the receptor layer, in capacitive sensors to efficiently sense moisture in two types of soil. Namely, our study unveiled that Cr--MOF-1 offers the best sensitivity (≈24,000 pF) among the other tested MOFs for any given range of soil-moisture content, outperforming several well-known oxide materials. The corresponding increase in the sensitivities for tested MOFs at 500 Hz are ≈450, ≈200, and ≈30% for Cr--MOF-1, Al-ABTC--MOF, and Zr-fum--MOF, respectively. Markedly, Cr--MOF-1, with its well-known water capacity, manifests an excellent sensitivity of ≈450% in clayey soil, and the analogous response time was 500 s. The noted unique sensing properties of Cr--MOF-1 unveils the great potential of MOFs for soil-moisture sensing application.

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Source
http://dx.doi.org/10.1021/acsami.2c20141DOI Listing

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