High-yield preparation of K-birnessite layered nanoflake
-
Add time:07/18/2019 Source:sciencedirect.com
A high-yield and facile approach for producing K-birnessite layered nanoflake was proposed via simply mixing and hydrothermally heating the mixture of potassium oxalate and potassium permanganate aqueous solution. The product yield was proved to be significantly increased with the addition of potassium oxalate, and the possible reason was also discussed. The product was confirmed to be K-birnessite by a series of characterizations, and fabricated on nickel foam to study the electrochemical behaviors as active electrode material for supercapacitor. Electrochemical results showed that the product exhibited well-performed charge storage properties, and could be promising for applications in energy storage devices.
We also recommend Trading Suppliers and Manufacturers of Preparation K (cas 11113-82-9). Pls Click Website Link as below: cas 11113-82-9 suppliers
Prev:Boosting the oxygen reduction reaction of the misfit [Ca2CoO3-δ]q[CoO2] (C349) by the addition of Praseodymium Oxide (cas 11113-81-8)
Next:Design, preparation, and optical characteristics of novel red phosphors A2NaInF6:Mn4+ (A = K and NH4) for improving the performance of WLED) - 【Back】【Close 】【Print】【Add to favorite 】
- Related Information
- Dopamine binding directly up-regulates (Na+, K+)-ATPase activity in the gills of the freshwater shrimp Macrobrachium amazonicum07/26/2019
- Preparation of layered K/Mg-Fe-Al catalysts and its catalytic performances in CO hydrogenation07/25/2019
- Enzymatic formation of compound-K from ginsenoside Rb1 by enzyme preparation from cultured mycelia of Armillaria mellea07/24/2019
- Compound K producing from the enzymatic conversion of gypenoside by naringinase07/23/2019
- Preparation and characterization of dry powder bacteriophage K for intestinal delivery through oral administration07/22/2019
- Glide Path Enlargement of Mandibular Molar Canals by Using K-files, the ProGlider File, and G-Files: A Comparative Study of the Preparation Times07/20/2019
- Effect of preparation methods on the structure and catalytic performance of Fe–Zn/K catalysts for CO2 hydrogenation to light olefins07/21/2019
- Design, preparation, and optical characteristics of novel red phosphors A2NaInF6:Mn4+ (A = K and NH4) for improving the performance of WLED07/19/2019


