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June 11, 2026Discover Electrochemistry.0 citationsOpen Access

Nanomaterials as energy storage materials

RSRanjeet SinghACAlok Kumar ChaudhariESEkta Sonker

Key Points

  • This review aims to explore the advancements in nanomaterials for energy storage applications, particularly in capacitors and lithium batteries.
  • Analyzed the properties of carbon-based materials, conducting polymers, and metal oxides for energy storage.
  • Discussed the utilization of silicon-based nanomaterials and flexible electrodes.
  • Examined modern nanomaterials like MXenes and metal-organic frameworks for energy storage efficiency.
  • Carbon-based materials provide high surface areas, enhancing energy storage capacity.
  • Conducting polymers offer low-cost and high charge density, effectively functioning in pseudocapacitance.
  • Silicon-based and flexible electrodes improve energy storage performance by addressing unstable solid-electrolyte interphase issues.

Abstract

The development of nanostructured materials and improved capability of controlling the size dependent properties in the previous two decades have offered extensive application for energy storage applications. This review highlights the benefits provided by nanomaterials for capacitors using (i) carbon based materials for high surface area, (ii) conducting polymers as low cost, high charge density, easily processable, electroactive pseudocapacitive material and (iii) metal oxides for pseudocapacitance effect. Further it covers the use silicon based nanomaterials, flexible electrodes and controlling the unstable solid-electrolyte interphase (SEI) for efficient energy storage in lithium batteries. Applications of some important modern nanomaterials like MXenes, borophene, phosphorene, janus nanosheets, Ti 3 C 2 and metal organic framework (MOF) derived nanostructures for energy storage is also briefly discussed.

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Cite This Study

Singh et al. (2026) studied this question.

synapsesocial.com/papers/6a2a4fa380c8f91e7f39c98chttps://doi.org/10.1007/s44373-026-00140-3
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