Metal–Organic Framework-Based Sensors for Environmental Contaminant Sensing

Датчики на основе металл‑органических каркасов для детектирования загрязняющих веществ в окружающей среде
Shun Mao, Xian Fang, Boyang Zong
2018-07-13

MOF-based sensorselectrochemical sensorsfield-effect transistor sensorsmetal-organic frameworks (MOFs)optical sensors
Increasing demand for timely and accurate environmental pollution monitoring and control requires new sensing techniques with outstanding performance, i.e., high sensitivity, high selectivity, and reliability. Metal-organic frameworks (MOFs), also known as porous coordination polymers, are a fascinating class of highly ordered crystalline coordination polymers formed by the coordination of metal ions/clusters and organic bridging linkers/ligands. Owing to their unique structures and properties, i.e., high surface area, tailorable pore size, high density of active sites, and high catalytic activity, various MOF-based sensing platforms have been reported for environmental contaminant detection including anions, heavy metal ions, organic compounds, and gases. In this review, recent progress in MOF-based environmental sensors is introduced with a focus on optical, electrochemical, and field-effect transistor sensors. The sensors have shown unique and promising performance in water and gas contaminant sensing. Moreover, by incorporation with other functional materials, MOF-based composites can greatly improve the sensor performance. The current limitations and future directions of MOF-based sensors are also discussed.
1
Combining MOFs with other functional materials to form composites can greatly improve sensor performance.
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MOF-based sensing platforms have been developed for detecting a range of environmental contaminants including anions, heavy metal ions, organic compounds, and gases.
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MOFs offer advantageous properties for sensors—high surface area, tailorable pore size, high density of active sites, and high catalytic activity—supporting high sensitivity and selectivity.
4
Recent MOF-based sensors employing optical, electrochemical, and field-effect transistor transduction show promising performance for water and gas contaminant sensing.
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The review identifies current limitations of MOF-based sensors and outlines future research directions to advance their environmental sensing applications.

Metal–organic framework (MOF)-based sensors for environmental contaminant detection

Performance characteristics and sensing capabilities of MOF-based platforms (optical, electrochemical, and FET) for detecting environmental contaminants (anions, heavy metal ions, organic compounds, and gases), including sensitivity, selectivity, reliability, and improvements via MOF-based composites

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2018-07-13
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Shun Mao
Xian Fang
Boyang Zong
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