Journal of Inorganic Materials, Volume. 38, Issue 8, 954(2023)
[1] F LIU, Y CHENG, J C TAN et al. Carbon nanomaterials with hollow structures: a mini-review. Frontiers in Chemistry(2021).
[3] J LIANG, H HU, H PARK et al. Construction of hybrid bowl-like structures by anchoring NiO nanosheets on flat carbon hollow particles with enhanced lithium storage properties. Energy & Environmental Science, 1707(2015).
[7] L YU, X Y YU, X W LOU. The design and synthesis of hollow micro-/nanostructures: present and future trends. Advanced Materials(2018).
[9] D LACHOS-PEREZ, P C TORRES-MAYANGA, E R ABAIDE et al. Hydrothermal carbonization and liquefaction: differences, progress, challenges, and opportunities. Bioresource Technology(2022).
[10] Y N KAN, B W CHEN, S C ZHAI et al. Chemical compositions of carbon sources affected on surface morphology and spectral properties of the synthetic carbon microspheres. Spectroscopy and Spectral Analysis, 3153(2020).
[17] Z XU, Y X LIU, C. F XU et al. B-doped hierarchical porous carbon spheres prepared by xylose-soft template hydrothermal strategy for enhancing electrochemical property. Chinese Journal of Inorganic Chemistry, 2006(2022).
[24] Z B XING, Z J GUO, Y W ZHANG et al. Regulation of SDS on the surface charge density of SB3-12 micelles and its effect on drug dissolution. Acta Physico-Chimica Sinica(2020).
[28] J YIN, W L ZHANG, N A ALHEBSHI et al. Synthesis strategies of porous carbon for supercapacitor applications. Small Methods(2020).
[31] X LIU, P P SONG, J H HOU et al. Revealing the dynamic formation process and mechanism of hollow carbon spheres: from bowl to sphere. ACS Sustainable Chemistry & Engineering, 2797(2018).
[32] H H LIN, Z X TAN, J W YANG et al. Highly porous carbon material from polycyclodextrin for high-performance supercapacitor electrode. Journal of Energy Storage(2022).
[34] J Q FU, L BAI, M S CHI et al. Study on the evolution pattern of the chemical structure of Fenton pretreated lignin during hydrothermal carbonization. Journal of Environmental Chemical Engineering(2022).
[35] X JIA, L C LI, J W TENG et al. Glycation of rice protein and
[37] L N MA, Z J BI, W ZHANG et al. Synthesis of a Three-dimensional interconnected oxygen-, boron-, nitrogen-, and phosphorus tetratomic-doped porous carbon network as electrode material for the construction of a superior flexible supercapacitor. ACS Applied Materials & Interfaces, 46170(2020).
[39] W PHOLAUYPHON, R N BULAKHE, J MANYAM et al. High- performance supercapacitors using carbon dots/titanium dioxide composite electrodes and carbon dot-added sulfuric acid electrolyte. Journal of Electroanalytical Chemistry(2022).
[41] Y ZHANG, K Y LIU, W ZHANG et al. Electrochemical performance of electrodes in MnO2 supercapacitor. Acta Chimica Sinica, 909(2008).
[45] Y CHEN, Y N MA, J D HUANG et al. Fabricating dual redox electrolyte to achieve ultrahigh specific capacitance and reasonable Coulombic efficiency for biomass activated carbon. Electrochimica Acta(2022).
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Zhou XU, Yuxuan LIU, Junlin CHI, Tingting ZHANG, Shuyue WANG, Wei LI, Chunhui MA, Sha LUO, Shouxin LIU.
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Received: Nov. 28, 2022
Accepted: --
Published Online: Dec. 28, 2023
The Author Email: LUO Sha (luo.sha.85@163.com), LIU Shouxin (liushouxin@126.com)