Porous nickel–cobalt phosphate with oxygen-rich vacancies in situ grown on dopamine-modified cellulose textiles as self-supporting high mass loadings supercapacitor electrode
Tian W, Ren P, Hou X, Fan B, Wang Y, Pei L, Wang H, Chen Z, Jin Y
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Tian, W., Ren, P., Hou, X., Fan, B., Wang, Y., Pei, L., Wang, H., Chen, Z., & Jin, Y. (2025). Porous nickel–cobalt phosphate with oxygen-rich vacancies in situ grown on dopamine-modified cellulose textiles as self-supporting high mass loadings supercapacitor electrode. Journal of Colloid and Interface Science, 677, 626-636. https://doi.org/10.1016/j.jcis.2024.08.112
Tian W, Ren P, Hou X, Fan B, Wang Y, Pei L, Wang H, Chen Z, Jin Y. Porous nickel–cobalt phosphate with oxygen-rich vacancies in situ grown on dopamine-modified cellulose textiles as self-supporting high mass loadings supercapacitor electrode. Journal of Colloid and Interface Science. 2025;677:626-636. doi:10.1016/j.jcis.2024.08.112
Tian, W., et al. "Porous nickel–cobalt phosphate with oxygen-rich vacancies in situ grown on dopamine-modified cellulose textiles as self-supporting high mass loadings supercapacitor electrode." Journal of Colloid and Interface Science, vol. 677, 2025, pp. 626-636.
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