Metal-Organic Framework for Plastic Depolymerization and Upcycling

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4

초록

Plastics are essential in modern life but accumulate as waste. Mechanical reprocessing reduces material quality, whereas thermochemical routes require harsh conditions and are costly to upgrade. Together, these factors hinder the large-scale recovery of plastics into equivalent materials. Metal-organic frameworks provide a programmable platform where reticular design fixes porosity and positions well-defined Lewis, Br & oslash;nsted, redox, and photoredox sites that can preconcentrate oligomers and align scissile bonds for activation. These attributes enable complementary pathways spanning hydrolysis, alcoholysis, aminolysis, photo-oxidation, electrocatalysis, and MOF-derived transformations, with adsorption-guided capture-to-catalysis workflows emerging as integrative schemes. In this review, we establish common figures of merit such as space-time yield, monomer selectivity and purity, energy intensity, site-normalized turnover, and solvent or corrosion footprints. These metrics are connected to design rules that involve active-site chemistry and transport through semi-crystalline substrates. We also emphasize durability under hot aqueous, alcoholic, or oxidative conditions as essential for producing polymer-grade products.

키워드

metal-organic frameworks (MOFs)plastic depolymerizationupcyclingenvironment pollutioncircular economyRETICULAR CHEMISTRYWATER STABILITYCO2 REDUCTIONLIFE-CYCLEUIO-66ADSORPTIONPOROSITYDEFECTSCAPTURERELEASE
제목
Metal-Organic Framework for Plastic Depolymerization and Upcycling
저자
Lee, KisungHan, SuminKim, MinseKim, Byoung-suPark, Jeong-AnnLim, Kwang SukHa, Suk-JinKim, Hyun-Ouk
DOI
10.3390/cryst15100897
발행일
2025-10-16
유형
Review
저널명
Crystals
15
10