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Updated: Jan 18, 2026

Controlled Photoredox Ring-Opening Polymerization of O-Carboxyanhydrides Mediated by Ni/Zn Complexes
Published on: November 21, 2017
Spent Battery-to-Catalyst: Asymmetric Mn-O Motifs Boost Oxygen Activation for Upgrading Polystyrene to Aromatic
Shuyi Zhang1, Mingyu Chu1, Qingqing Zhang2
1State Key Laboratory of Bioinspired Interfacial Materials Science, Institute of Functional Nano & Soft Materials (FUNSOM), Soochow University, Suzhou 215123, P. R. China.
Abstract:
The rapid expansion of global lithium-ion battery production has positioned spent batteries as a critical challenge in resource sustainability and environmental stewardship. Breaking from conventional recycling paradigms that focus solely on metal ion/oxide recovery, this study pioneers an innovative inorganic-organic solid waste co-recycling system. We demonstrate the catalytic potential of spent lithium manganese oxide (LMO) materials through their good oxidation properties to upcycle waste polystyrene (PS) into value-added benzoic acid (BA). Mechanistic investigations reveal that Li+ polarization induces asymmetric Mn3+-O-Mn4+ coordination in the LMO structure, facilitating lattice oxygen activation and oxygen vacancy formation. These structural modifications enable efficient O2 conversion into reactive superoxide radicals (•O2-), which drive the selective oxidative cleavage of PS chains. The optimized system achieves an exceptional 88% solid conversion with ∼70% BA selectivity at a low temperature of 150 °C within 1 h. The dual waste-stream remediation approach demonstrates significant potential for sustainable resource recovery at the energy-environment nexus.
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