加氢脱氧
解聚
催化作用
光催化
聚碳酸酯
双酚A
化学
选择性
有机化学
光化学
碳氢化合物
化学工程
除氧
材料科学
喷气燃料
反应机理
氢解
航程(航空)
氢
聚合物
加氢脱硫
反应中间体
芳香烃
多相催化
作者
Rajat Ghalta,Arzoo Chauhan,Diku Raj Deka,Subhajit Chakraborty,Sebastian C. Peter,Rajendra Srivastava
摘要
ABSTRACT Polycarbonate (PC) is among the most challenging plastics to recycle because its robust aromatic C─O linkages resist conventional depolymerization strategies. Here, we report the first visible‐light‐driven photocatalytic system for the reductive depolymerization and hydrodeoxygenation of PC under ambient conditions, selectively producing propane‐2,2‐diyldicyclohexane (DCHP), a saturated hydrocarbon relevant to jet fuel applications. A multifunctional Ru@P‐CHS(g‐C 3 N 4 ) catalyst integrates light harvesting, electron mediation, acidity, and hydrogen activation, enabling near‐quantitative conversion of bisphenol A with ∼94% molar selectivity toward DCHP. The catalyst also efficiently depolymerizes a range of real‐world PC waste. Mechanistic investigations, including in situ UPS, kinetic isotope effect measurements, H 2 ─D 2 scrambling experiments, and DRIFT‐IR spectroscopy, reveal light‐driven electron accumulation at Ru sites and the formation of Ru─H intermediates, confirming illumination‐induced H 2 activation at Ru that drives C─O bond cleavage. This work establishes a sustainable strategy for converting end‐of‐life plastics into fuel‐range hydrocarbons and introduces reductive photocatalysis as a new paradigm for plastic upcycling.
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