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Recently, the advancements in energy storage and conversion have surfaced as a critical solution topic currently being discussed in various nations to accomplish a sustainable energy strategy that meets the increasing global energy demands. Therefore, several electrochemists are keen to propose the fabrication of next-generation devices that have boosted electrochemical performance as well as enhanced photochemical conversion efficiency. Polyaniline composite had been chosen for this contemporary study due to its tunable properties and multifunctionality. With a prominence on their practices in renewable energy supply, we have comprehensive topical progressions in research on accurate molecular design grounded on inorganic and organic fillers mixed with polyaniline to form its composite and novel procedures in this investigation. These mixed fillers transform polyaniline into binary and ternary composites by lowering the energy barrier, significantly enhancing the efficiency of next-generation energy supply systems. Wide determination is being reformed to enhance energy efficiency and the accountable usage of energy-active properties. This inclusion of fillers boosts redox reversibility, specific charge capacitance, and photo-conversion efficiency in the chain of polyaniline assembly. The review delivers a comparative scrutiny of multifunctional polyaniline composites, helping readers comprehend how the amalgamation of numerous fillers can enhance the electrochemical performance and photo-conversion efficiency that unlocks its potential in the fabrication of next-generation devices. Such pendant fillers linked to polyaniline assembly unlocked innovative skylines for investigators for sustainable energy resolution, owing to robust charge alteration with boosted efficiency compatible with supercapacitors and next-generation solar devices. This could turn out to be an upcoming transformation that assists administrators in sustaining command and is an integrated approach for satisfying real-world requirements.
Saraswat et al. (Fri,) studied this question.
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