Preparation method for supercapacitor electrode material MnO2
A technology of supercapacitors and electrode materials, applied in capacitors, electrolytic capacitors, circuits, etc., can solve the problems of narrow potential window, high price, and low energy density
Patent Information
- Authority / Receiving Office
- CN · China
- Current Assignee / Owner
- Publication Date
- 2012-11-21
- Estimated Expiration
- Not applicable · inactive patent
Abstract
Description
technical field
[0001] The invention relates to an electrode material MnO 2 The preparation method, especially a kind of supercapacitor electrode material MnO 2 method of preparation. Background technique
[0002] Supercapacitors, also known as ultra-large-capacity capacitors or electrochemical capacitors, are a new type of energy storage element between traditional electrostatic capacitors and batteries. The energy stored in a supercapacitor can reach more than 10 times that of an electrostatic capacitor, and at the same time it has a power density 10 to 100 times higher than that of a battery. With the characteristics of long service life and no memory effect, it has a very broad application prospect.
[0003] Supercapacitors can be divided into two types according to the energy storage mechanism: one is based on the electrode, the electric double layer capacitor generated by the interface charge separation of the electrolyte, which mostly uses activated carbon with a h...
Examples
Embodiment Construction
[0007] The invention provides a supercapacitor electrode material MnO 2 The preparation method, specifically adopting the citric acid sol-coagulation chamber method to prepare nano-MnO 2 Materials, to study the influence of different calcination temperature and holding time on the samples. XRD analysis and SEM analysis showed that the low-valence manganese oxide MnO was obtained by calcination at different temperatures (350-500°C). 2 and MnO 2 , the oxides in the M″ valence state can be obtained through acidification; when the roasting time is shorter, the particles of the sample are smaller and the specific surface area is larger. The cyclic voltammetry and constant current charge and discharge tests show that the sample obtained by holding the heat for 3 hours has better Capacitance characteristics. The results show that the prepared MnO 2 , The electrode material has good electrochemical performance, suitable for supercapacitor electrode material. A kind of supercapacit...