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Flexible sensor based on composites of hafnium diselenide, carboxylated single walled carbon nanotubes, and carboxylated graphene for in situ rutin detection in plants.

Tang F, Luo B, Zhang L, Liu K, Yu W, Hou P, Liu T, Li A, Zhao C.

Talanta · 6 Oct 2025 · 10.1016/j.talanta.2025.128965

Abstract

Rutin, a natural flavonoid with anti-inflammatory and antioxidant properties, is widely found in plants and foods. To meet the demand for in situ detection of Ru in soft plant tissues, in this paper, a thin laser-induced graphene (LIG) electrode was prepared on polyimide (PI) and transferred to Ecoflex substrate, obtaining LIG/Ecoflex electrodes with good flexibility and tensile resistance. To further improve the electrochemical catalytic performance, nanocomposites of hafnium diselenide (HfSe 2 ), carboxylated single-walled carbon nanotubes (COOH-SWCNT), carboxylated graphene (COOH-GR) and nafion were also modified on the surface of LIG by a one-step dropping method. The HfSe 2 -COOH-SWCNT-COOH-GR-nafion/LIG/Ecoflex sensor could detect Ru in the range of 1 μM-700 μM under different pH values (4.5-7.4). It was also successfully used to in situ detection of Ru content in tomato leaves under different salt stress. The as-prepared sensor has important practical application prospects in the monitoring of plant physiological information in situ.

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