<p>In this study, we investigate the application of butylammonium hexachlorostannate (BAHCS) as a novel material for enhancing the performance of lithium-ion batteries (LIBs). BAHCS, a metal halide perovskite-related compound, is expected to exhibit potential electrochemical properties due to its hybrid organic–inorganic structure. We synthesized and characterized BAHCS, evaluating its potential as an electrode material in LIBs. Electrochemical testing demonstrated that BAHCS possesses a moderate specific capacity (around 100 mAh g<sup>−1</sup>) and good capacity retention and cycling stability. This study highlights the promise of BAHCS as a functional material in next-generation LIBs, providing a pathway for the development of organic–inorganic energy storage devices. Our findings suggest that further optimization of BAHCS-based materials could lead to significant advancements in LIB technology, indicating that incorporation of new inorganic cations in perovskite materials might improve the lithium insertion–extraction process in the cathode.</p>

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Butylammonium Hexachlorostannate for Lithium-Ion Batteries: An Experimental Application

  • Alfredo Romero-Contreras,
  • Edgar Gonzalez-Juarez,
  • Ricardo Briones-Martínez,
  • Eduardo M Sanchez-Cervantes

摘要

In this study, we investigate the application of butylammonium hexachlorostannate (BAHCS) as a novel material for enhancing the performance of lithium-ion batteries (LIBs). BAHCS, a metal halide perovskite-related compound, is expected to exhibit potential electrochemical properties due to its hybrid organic–inorganic structure. We synthesized and characterized BAHCS, evaluating its potential as an electrode material in LIBs. Electrochemical testing demonstrated that BAHCS possesses a moderate specific capacity (around 100 mAh g−1) and good capacity retention and cycling stability. This study highlights the promise of BAHCS as a functional material in next-generation LIBs, providing a pathway for the development of organic–inorganic energy storage devices. Our findings suggest that further optimization of BAHCS-based materials could lead to significant advancements in LIB technology, indicating that incorporation of new inorganic cations in perovskite materials might improve the lithium insertion–extraction process in the cathode.