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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.

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.

Plant phenotyping relevance

植物組織内のルチンをin situ測定する柔軟電気化学センサーを開発し、検出範囲とトマト葉での実利用を検証しており、植物生理状態の取得手法が中心である。

abstractTo 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.
abstractIt was also successfully used to in situ detection of Ru content in tomato leaves under different salt stress.
abstractThe as-prepared sensor has important practical application prospects in the monitoring of plant physiological information in situ.

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