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The combination of chemo- and biocatalysis for multistep syntheses provides attractive advantages in terms of evolvability, promiscuity, and sustainability striving for desirable catalytic performance. Through the encapsulation of flavin analogues by both NADH and heme mimics codecorated heteroleptic metalorganic capsules, herein, we report a progressive hostguest strategy to imitate cytochrome P450s catalysis for cascade oxidative coupling catalysis. Besides the construction of stable dual-function metalorganic capsules and the modification of cofactor-decorated capsules at the domain of enzymes, this supramolecular strategy involves multistage directional electron flow, affording reactive ferric peroxide species for inducing oxygenation. Under light irradiation, the metalorganic capsule selectively converts stilbene to oxidative coupling products (including 2-oxo-1,2-diphenylethyl formate, 2-alkoxy-1,2-diphenylethanone) in tandem with enzymatic reactions respectively, at the domain of natural enzymes. The ingenious combination of capsules and enzymes with the in situ-regenerated capsule-loaded NADH cofactor promises non-native coupling reactions by forming regional cooperation and division. This abiotic-biotic conjugated hostguest strategy is conducive to the de novo creation of multifunctional components approaching active enzymatic sites for reinforced matter and energy transporting, demonstrating a key role of multicomponent supramolecular catalysts for one-pot integrated catalytic conversions.
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http://dx.doi.org/10.1021/jacsau.2c00322 | DOI Listing |
ACS Appl Mater Interfaces
July 2025
Key Laboratory of Functional Inorganic Materials of Anhui Province, Key Laboratory of Structure and Functional Regulation of Hybrid Materials of Ministry of Education, School of Chemistry & Chemical Engineering, Anhui University, Hefei 230601, China.
Indoxyl sulfate (IS), a protein-bound uremic toxin implicated in chronic kidney disease (CKD) progression and extrarenal pathologies, necessitates the development of accessible monitoring tools for point-of-care diagnostics. To address this challenge, we engineered a portable fluorescent capsule device by encapsulating an antenna-effect-enhanced europium metal-organic gel (EuMOG) within a biocompatible alginate matrix. This innovative sensor exhibits specific ratiometric fluorescence modulation toward IS via a photoinduced electron transfer (PET) mechanism, wherein IS binding triggers a distinct emission shift: quenching of Eu red emission (619 nm) with concurrent 29-fold enhancement of ligand-centered blue emission (393 nm).
View Article and Find Full Text PDFAppl Biochem Biotechnol
July 2025
Advanced Biomaterials and Tissue Engineering Center, College of Life Science and Technology, Huazhong University of Science and Technology, Wuhan, 430074, Hubei Province, China.
Enzymes, key catalysts in biochemical reactions, are prone to denaturation under harsh conditions, leading to reduced stability and higher costs. Enzyme immobilization, using carriers like magnetic nanoparticles, metal-organic frameworks, and viruses, is a common solution. T4 bacteriophage, a virulent E.
View Article and Find Full Text PDFAngew Chem Int Ed Engl
July 2025
Yusuf Hamied Department of Chemistry, University of Cambridge, Cambridge, CB2 1EW, U.K.
Herein we utilize the binding of fluoride to boron atoms to functionalize the interior of a boron-containing trigonal prismatic capsule that incorporates two triangular and three rectangular ligands, enabling the tuning of its guest binding properties. The methyl groups of the triangular ligands guide the rectangular ligands to adopt a "landscape" orientation to avoid steric hindrance. This small structural change gives rise to an enlarged interior cavity volume for guest encapsulation, as compared with a previously-reported trigonal prismatic capsule, where the same rectangular ligand took a "portrait" orientation with a non-methylated triangular ligand of similar size.
View Article and Find Full Text PDFNanoscale Adv
May 2025
School of Physics, Chemistry and Earth Sciences, University of Adelaide Adelaide SA 5005 Australia
Metal-organic frameworks (MOFs) with high-density uncoordinated open metal sites have been intensively investigated in Xe/Kr separation because of their strong and selective interaction with Xe. However, the dynamic Xe/Kr separation behavior of these MOFs is often unsatisfactory in practical applications due to slow diffusion kinetics. This work presents a facile two-step method to synthesize hollow Ni-MOF-74 particles with short diffusion lengths to enhance dynamic Xe/Kr separation.
View Article and Find Full Text PDFJ Am Chem Soc
April 2025
Laboratory of Advanced Materials, Department of Chemistry, Shanghai Key Laboratory of Molecular Catalysis and Innovative Materials, State Key Laboratory of Molecular Engineering of Polymers, Collaborative Innovation Center of Chemistry for Energy Materials (2011-iChEM), College of Chemistry and Mate
Although the superiority of hierarchical structure has driven extensive demand for applications, establishing hierarchy in a long-range-ordered single crystal remains a formidable challenge due to the inherent competition and contradiction between single crystallinity and controllable hierarchical structure. Herein, we demonstrate a growth and dissociation kinetics cooperative strategy for synthesizing a family of hollow single-crystalline mesoporous metal-organic frameworks (meso-MOFs) with hierarchical structures. The approach employs a dual-template method, integrating both hard and soft templates.
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