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- W4317435054 abstract "Abstract Monitoring nitrogen utilization efficiency and soil temperature in agricultural systems for timely intervention is essential for crop health with reduced environmental pollution. Herein, this work presents a high‐performance multi‐parameter sensor based on vanadium oxide (VO X )‐doped laser‐induced graphene (LIG) foam to completely decouple nitrogen oxides (NO X ) and temperature. The highly porous 3D VO X ‐doped LIG foam composite is readily obtained by laser scribing vanadium sulfide (V 5 S 8 )‐doped block copolymer and phenolic resin self‐assembled films. The heterojunction formed at the LIG/VO X interface provides the sensor with enhanced response to NO X and an ultralow limit of detection of 3 ppb (theoretical estimate of 451 ppt) at room temperature. The sensor also exhibits a wide detection range, fast response/recovery, good selectivity, and stability over 16 days. Meanwhile, the sensor can accurately detect temperature over a wide linear range of 10–110 °C. The encapsulation of the sensor with a soft membrane further allows for temperature sensing without being affected by NO X . The unencapsulated sensor operated at elevated temperature removes the influences of relative humidity and temperature variations for accurate NO X measurements. The capability to decouple nitrogen loss and soil temperature paves the way for the development of future multimodal decoupled electronics for precision agriculture and health monitoring." @default.
- W4317435054 created "2023-01-19" @default.
- W4317435054 creator A5003803625 @default.
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- W4317435054 creator A5056437521 @default.
- W4317435054 creator A5059552490 @default.
- W4317435054 creator A5062134915 @default.
- W4317435054 creator A5075596275 @default.
- W4317435054 date "2023-03-01" @default.
- W4317435054 modified "2023-10-13" @default.
- W4317435054 title "Vanadium Oxide‐Doped Laser‐Induced Graphene Multi‐Parameter Sensor to Decouple Soil Nitrogen Loss and Temperature" @default.
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