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Conjugated Microporous Polymers Bearing Poly(Acrylic Acid) Brushes: Site-Specific Rhodium Immobilization for
Zi Yang Dong1,2, Lin Xuan Fang1,2, Cong Ying Song1,2
1Key Laboratory of Biomedical Polymers of Ministry of Education, College of Chemistry and Molecular Sciences, Wuhan University, Wuhan, Hubei, P. R. China.
None:
Photocatalytic NADH regeneration is limited by poor recovery of the rhodium mediator (Rh*) and enzyme deactivation caused by free Rh* species and photogenerated holes. In this study, we introduce poly(acrylic acid) brushes grafted onto conjugated microporous polymers (CMPs) to anchor Rh* complexes (cPTT-P-Rh*). The negatively charged brushes ensure excellent dispersibility and prevent Rh* leaching via electrostatic interactions. They also serve as a conductive pathway for internal electron transfer from the photocatalyst to the anchored Rh*, which is more efficient than intermolecular transfer. Moreover, the brushes physically shield photogenerated holes, protecting the enzyme from both free Rh* and hole-induced damage. Using a low-power 10 W 460 nm LED light, this system achieves 87.7% NADH regeneration (with exclusive 1,4-NADH production) within 15 min with a turnover frequency (TOF) of 93.3 h-1, comparable to the highest reported values in the literature. Notably, the enzyme retains 76.8% activity after photocatalysis, and circular dichroism confirms no damage to protein secondary structure. The catalyst maintains 61.1% activity after seven cycles. This brush design uniquely integrates immobilization, electron transfer, and protection for efficient photobiocatalysis.
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