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September 3, 2026Advanced Sustainable Systems

Addressing the Practical Challenges of Green Organic Electrodes in Secondary Batteries: Toward Higher Energy, Longer Lifespan, and Improved Sustainability

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Authors

NZNing ZhangBeijing Institute of TechnologyYLYuetong LiHebei Medical UniversityYHYongxin HuangBeijing Institute of Technology

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Implication

Review outlines failure mechanisms and multiscale stabilization strategies in green organic secondary batteries, highlighting life-cycle trade-offs for sustainable energy storage.

Key Points

  • Analyze the primary degradation pathways of green organic electrode materials in rechargeable batteries and evaluate multidimensional engineering strategies through a sustainability-oriented life-cycle framework.
  • Synthesized mechanistic findings on organic electrode degradation, focusing on active material dissolution, parasitic interfacial reactions, and poor electronic conductivity.
  • Assessed multiscale mitigation approaches across molecular tuning, composite and interface engineering, electrolyte formulation, and functional binder design.
  • Evaluated practical trade-offs among electrochemical performance, synthesis energy, chemical toxicity, economic cost, and end-of-life recyclability.
  • Identified dissolution and shuttle migration of low-molecular-weight organic species in non-aqueous electrolytes as the dominant cause of irreversible capacity decay.
  • Demonstrated that combining molecular-level modification with protective interfaces and tailored electrolytes effectively inhibits active mass dissolution and enhances structural stability.
  • Established that practical deployment requires balancing energy density and cycle life against environmental metrics, including feedstock renewability and processing carbon footprint.

Cite This Study

Zhang et al. (2026) studied this question.

synapsesocial.com/papers/6a9935a0636c6408cfa7dfb5https://doi.org/10.1002/adsu.70635
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