Plasma-Liquid-Induced Synthesis of Scandium-Metalloporphyrin Frameworks for Boosted Sensing and Photosensitization.

Zhang, Zhankuo; Liu, Zhanxin; Chen, Xueshan; Wei, Yingnan; Yu, Huimin; Zhang, Jinyi; Zheng, Chengbin · Adv Mater · 2025

basic_science · Level V

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Abstract

Inserting metal ions into the porphyrin ring is one of the primary strategies to enhance the properties of porphyrin-based metal-organic frameworks (MOFs). However, the straightforward, rapid, and energy-efficient synthesis of porphyrin-based MOFs with high metallization for the porphyrin ring remains challenging. Herein, a solution anode glow discharge (SAGD) microplasma is presented for the one-step synthesis of scandium-metalloporphyrin frameworks (ScMPFs). The substantial number of electrons provided by the plasma-liquid interface not only accelerated the rapid nucleation and growth of MOFs but also promoted the incorporation of scandium (Sc<sup>3+</sup>), which has a small ionic radius and strong coordination ability, into the N atoms in the porphyrin ring, and enhanced the metallization of MOFs. The sufficient Sc<sup>3+</sup> in frameworks inhibited the recombination of electron-hole pairs, resulting in boosted reactive oxygen species yield and a low fluorescence background of MOFs. Consequently, the ScMPFs are employed for the sensitive and rapid detection of F<sup>-</sup> in water with a detection limit of 0.24 µm and for efficient bacteriostasis at low doses (10 µg mL<sup>-1</sup>, 12 mW cm<sup>-2</sup> light irradiation for 10 min).