Enhanced Cyclic Stability and Performance of Electrochromic Energy Storage Devices with In-Situ Solid Electrolyte Interphase

37 Pages Posted: 21 Jan 2025

See all articles by Longtao Fang

Longtao Fang

affiliation not provided to SSRN

Yasi Zhang

Chinese Academy of Sciences (CAS)

Weiping Xie

Chinese Academy of Sciences (CAS)

Alexandr Alexandrovich Rogachevr

affiliation not provided to SSRN

M.A. Yarmolenko

affiliation not provided to SSRN

Hongliang Zhang

Chinese Academy of Sciences (CAS)

Abstract

Electrochromic energy storage devices (EESDs) that integrate optical modulation with energy storage capabilities are emerging as promising candidates for next-generation smart windows, particularly in automotive skylights. Currently, challenges remain in enhancing the long-term stability and performance required for practical use.This study reports the in-situ formation of an optimized organic-inorganic hybrid solid-electrolyte interphase (SEI) layer facilitated by the use of a Zn2+/K+ dual-ion electrolyte system, which effectively stabilizes the electrode-electrolyte interface. The SEI consists of an organic-rich outer layer and an inorganic-rich inner layer, composed of ZnCO3, Zn3(PO4)2, ZnF2, and ZnS. Such hybrid organic-inorganic configuration plays a crucial role in facilitating zinc ion transfer and deposition, as well as enhancing the reversibility of the electrodes. Enhanced cyclic stability and exceptional electrochromic performance of the PB||Zn EESD are achieved via SEI, including high optical modulation (ΔT = 69.98%), rapid switching dynamics (tc = 13.8 s, tb = 12.8 s), excellent coloration efficiency (131.48 cm2 C−1) and outstanding long-term stability (90.8% retention of optical modulation after 6000 cycles). Essentially, the integrated dual function reflects the efficient energy management strategy since users typically utilize the EESDs to advance solar thermo-optic modulation performance in smart windows while the zero power consumption integrating photovoltaic solar cells is more dominant. This work provides a promising and sustainable solution for applications requiring long-term stability and energy efficiency.

Keywords: Electrochromic energy storage devices, Solid Electrolyte Interphase, Prussian blue, Zero Power Consumption

Suggested Citation

Fang, Longtao and Zhang, Yasi and Xie, Weiping and Rogachevr, Alexandr Alexandrovich and Yarmolenko, M.A. and Zhang, Hongliang, Enhanced Cyclic Stability and Performance of Electrochromic Energy Storage Devices with In-Situ Solid Electrolyte Interphase. Available at SSRN: https://ssrn.com/abstract=5106147 or http://dx.doi.org/10.2139/ssrn.5106147

Longtao Fang

affiliation not provided to SSRN ( email )

No Address Available

Yasi Zhang

Chinese Academy of Sciences (CAS) ( email )

Weiping Xie

Chinese Academy of Sciences (CAS) ( email )

Alexandr Alexandrovich Rogachevr

affiliation not provided to SSRN ( email )

No Address Available

M.A. Yarmolenko

affiliation not provided to SSRN ( email )

No Address Available

Hongliang Zhang (Contact Author)

Chinese Academy of Sciences (CAS) ( email )

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