Method for improving sodium storage performance of vanadium pentoxide electrode material through zinc ion pre-embedding
An electrode material and performance technology, applied in battery electrodes, secondary batteries, circuits, etc., can solve problems such as poor inherent conductivity, affecting sodium storage performance, and unstable layered structure, achieving low cost and high Na+ intercalation/extraction Activity, effect of improving sodium storage performance
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Embodiment 1
[0019] (1) First, 0.2547g of commercial vanadium pentoxide (V 2 o 5 ) powder and 3.85mL deionized water were mixed and stirred, and 1.15mL of 30% H2O was slowly added dropwise while stirring. 2 o 2 , continue to stir for 15 minutes after the addition is complete, then add deionized water to it to dilute the solution to the concentration of vanadium pentoxide Finally, the solution was transferred to an ultrasonic cleaner to continue ultrasonic treatment for 90 minutes, and left to age at room temperature for 3 days to obtain a reddish-brown V 2 o 5 gel.
[0020] (2) Stir and disperse the gel obtained in step (1), and dilute it with 25 mL of deionized water, and stir thoroughly for 6 hours to obtain a uniform and transparent V 2 o 5 sol
[0021] (3) The sol obtained in step (2) was frozen in the refrigerator for 24 hours and then transferred to a freeze dryer to dry to constant weight and then taken out to obtain V 2 o 5 ·nH 2 O electrode material precursor.
[002...
Embodiment 2
[0024] (1) First, 0.2547g of commercial vanadium pentoxide (V 2 o 5 ) powder and 3.85mL deionized water were mixed and stirred, and 1.15mL of 30% H2O was slowly added dropwise while stirring. 2 o 2 , continue to stir for 15 minutes after the addition is complete, then add deionized water to it to dilute the solution to the concentration of vanadium pentoxide Finally, the solution was transferred to an ultrasonic cleaner to continue ultrasonic treatment for 90 minutes, and left to age at room temperature for 3 days to obtain a reddish-brown V 2 o 5 gel.
[0025] (2) The gel obtained in step (1) was stirred and dispersed, and 25 mL of Zn(NO 3 ) 2 The solution was slowly added dropwise to the gel while stirring, and a uniform and transparent V was obtained after thorough stirring for 6 hours. 2 o 5 sol
[0026] (3) The sol obtained in step (2) was frozen in the refrigerator for 24 hours and then transferred to a freeze dryer to dry to a constant weight and then take...
Embodiment 3
[0029] (1) First, 0.2547g of commercial vanadium pentoxide (V 2 o 5 ) powder and 3.85mL deionized water were mixed and stirred, and 1.15mL of 30% H2O was slowly added dropwise while stirring. 2 o 2 , continue to stir for 15 minutes after the addition is complete, then add deionized water to it to dilute the solution to the concentration of vanadium pentoxide Finally, the solution was transferred to an ultrasonic cleaner to continue ultrasonic treatment for 90 minutes, and left to age at room temperature for 3 days to obtain a reddish-brown V 2 o 5 gel.
[0030] (2) The gel obtained in step (1) was stirred and dispersed, and 25 mL of Zn(NO 3 ) 2 The solution was slowly added dropwise to the gel while stirring, and a uniform and transparent V was obtained after thorough stirring for 6 hours. 2 o 5 sol
[0031] (3) The sol obtained in step (2) is frozen in the refrigerator for 24 hours and then transferred to a freeze dryer to dry to constant weight and then taken o...
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Abstract
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