A low-layer MOS 2 Preparation method of phosphorus-doped graphene electrochemical sodium storage composite electrode
A composite electrode, graphene electrochemical technology, applied in battery electrodes, electrochemical generators, nanotechnology for materials and surface science, etc. Adsorption of graphene oxide, uneven doping and other problems, to achieve the effect of convenient expansion of industrial application, easy to expand industrial application, high electrochemical sodium storage capacity
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Embodiment 1
[0031] A Few-Layer MoS 2 The preparation method of phosphorus-doped graphene electrochemical sodium storage composite electrode, comprises the steps:
[0032] S1. Ultrasonic disperse 3 mmol graphene oxide in 60 mL deionized water, then add 2 mmol tetrabutylphosphine bromide and stir thoroughly for 12 hours, then add 1.5 mmol sodium molybdate and 5 mmol L-cysteine in sequence , and keep stirring to dissolve it completely;
[0033] S2. Transfer the mixed solution obtained in S1 to a 100 mL hydrothermal reaction kettle, put the reaction kettle in a constant temperature oven, conduct a hydrothermal reaction at 240°C for 24 hours, let it cool down to room temperature naturally, and collect the solid by centrifugation product, and fully washed with deionized water, and dried in vacuum at 80°C; then the solid product obtained above was heat-treated at 800°C for 2 hours in a nitrogen atmosphere to prepare a few-layer MoS 2 / Phosphorus-doped graphene composite nanomaterials;
[00...
Embodiment 2
[0039] A Few-Layer MoS 2 The preparation method of phosphorus-doped graphene electrochemical sodium storage composite electrode, comprises the steps:
[0040] S1. Ultrasonic disperse 3 mmol graphene oxide in 60 mL deionized water, then add 4.5 mmol tetrabutylphosphine bromide and stir thoroughly for 12 hours, then add 1.5 mmol sodium molybdate and 6 mmol thiourea in sequence, and keep stirring Let it dissolve completely.
[0041] S2. Transfer the mixed solution obtained in S1 to a 100 mL hydrothermal reaction kettle, put the reaction kettle in a constant temperature oven, and let it cool down to room temperature naturally after hydrothermal reaction at 220°C for 24 hours, and collect the solid by centrifugation product, and fully washed with deionized water, dried in vacuum at 80°C; then the solid product obtained above was heat-treated at 700°C for 2 hours in a nitrogen atmosphere to prepare a few-layer MoS 2 / Phosphorus-doped graphene composite nanomaterials;
[0042] S3. T...
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