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首页> 外文期刊>ACS applied materials & interfaces >Continuous Monitoring of Soil Nitrate Using a Miniature Sensor with Poly(3-octyl-thiophene) and Molybdenum Disulfide Nanocomposite
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Continuous Monitoring of Soil Nitrate Using a Miniature Sensor with Poly(3-octyl-thiophene) and Molybdenum Disulfide Nanocomposite

机译:用聚(3-辛基 - 噻吩)和二硫化钼纳米复合材料的微型传感器连续监测土壤硝酸盐

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摘要

There is an unmet need for improved fertilizer management in agriculture. Continuous monitoring of soil nitrate would address this need. This paper reports an all-solid-state miniature potentiometric soil sensor that works in direct contact with soils to monitor nitrate-nitrogen (NO3--N) in soil solution with parts-per-million (ppm) resolution. A working electrode is formed from a novel nanocomposite of poly(3-octyl-thiophene) and molybdenum disulfide (POT-MoS2) coated on a patterned Au electrode and covered with a nitrate-selective membrane using a robotic dispenser. The POT-MoS2 layer acts as an ion-to-electron transducing layer with high hydrophobicity and redox properties. The modification of the POT chain with MoS2 increases both conductivity and anion exchange, while minimizing the formation of a thin water layer at the interface between the Au electrode and the ion-selective membrane, which is notorious for solid-state potentiometric ion sensors. Therefore, the use of POT-MoS2 results in an improved sensitivity and selectivity of the working electrode. The reference electrode comprises a screen-printed silver/silver chloride (Ag/AgCl) electrode covered by a protonated Nafion layer to prevent chloride (Cl-) leaching in long-term measurements. This sensor was calibrated using both standard and extracted soil solutions, exhibiting a dynamic range that includes all concentrations relevant for agricultural applications (1-1500 ppm NO3--N). With the POT-MoS2 nanocomposite, the sensor offers a sensitivity of 64 mV/decade for nitrate detection, compared to 48 mV/decade for POT and 38 mV/decade for MoS2. The sensor was embedded into soil slurries where it accurately monitored nitrate for a duration of 27 days.
机译:在农业中改善肥料管理有一个未满足的需求。不断监测土壤硝酸盐将解决这种需求。本文报道了一种全固态微型电位土壤传感器,可与土壤直接接触,以监测土壤溶液中硝酸盐 - 氮(NO3 - N),百万百万(PPM)分辨率。工作电极由涂覆在图案化的Au电极上的聚(3-辛基 - 噻吩)和钼二硫化物(Pot-MOS2)的新型纳米复合材料形成,并使用机器人分配器用硝酸盐选择性膜覆盖。 Pot-MOS2层用作具有高疏水性和氧化还原性能的离子到电子转换层。用MOS2的罐链的改变增加了导电性和阴离子交换,同时最小化在Au电极和离子选择性膜之间的界面处的薄水层的形成,这对于固态电位离子传感器是臭名昭着的。因此,使用POT-MOS2导致工作电极的灵敏度和选择性改善。参比电极包含由质子化的Nafion层覆盖的丝网印刷的银/氯化银(Ag / AgCl)电极,以防止长期测量中的氯化物(CL-)浸出。使用标准和提取的土壤溶液校准该传感器,表现出动态范围,包括所有与农业应用相关的浓度(1-1500ppm no3 - n)。通过Pot-MOS2纳米复合材料,传感器提供64 MV /十年的敏感性,用于硝酸盐检测,而锅的48 MV /十年和MOS2为38 MV /十年。将传感器嵌入到土壤浆料中,在其准确地监测硝酸盐27天。

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