{"product_id":"comoo-c","title":"CoMoO₄\/C","description":"\u003cp\u003eProduct Name CoMoO₄\/C Product Overview Carbon-doped cobalt molybdate (CoMoO₄\/C) is a high-performance molybdate-based composite functional material. It is prepared by in-situ carbonization, hydrothermal composite and high-temperature coating processes with orthorhombic cobalt molybdate as the main matrix. Pure cobalt molybdate possesses abundant bimetallic redox active sites, high theoretical capacity and excellent catalytic performance, yet suffers from low intrinsic conductivity, structural pulverization and severe volume variation during cycling. By uniform carbon doping and surface coating, this product constructs a continuous 3D conductive network, effectively compensating for the defects of pure cobalt molybdate while maintaining its inherent advantages of high activity and rich reactive sites. With stable physicochemical properties and controllable microstructure, it serves as a core molybdate functional material for new energy storage, electrocatalysis, environmental treatment and sensing detection. Product Features Excellent Conductivity \u0026amp; Kinetics Carbon phase is uniformly distributed on the surface and gaps of cobalt molybdate particles to form efficient conductive pathways. The electronic conductivity is improved by 1–2 orders of magnitude compared with pure CoMoO₄, which greatly reduces internal resistance and electrode polarization, accelerates ion diffusion and electron transfer, and adapts to high-rate energy storage and rapid electrocatalytic reactions. Superior Structural Stability The carbon coating layer effectively anchors the crystal structure of cobalt molybdate, buffers volume expansion during charge-discharge and catalytic reactions, inhibits nanoparticle agglomeration and structural pulverization, and significantly improves cycle life and structural integrity, solving the common problems of short service life and easy failure of traditional molybdate materials. Bimetallic Synergy \u0026amp; Abundant Active Sites Benefiting from the multivalent reversible redox system of Co²⁺\/Co³⁺ and Mo⁴⁺\/Mo⁶⁺, combined with abundant active sites exposed by the porous carbon structure, the material achieves high specific capacity for energy storage and high selectivity \u0026amp; efficiency for electrocatalysis, with comprehensive performance superior to single metal oxides and pure molybdate materials. Stable Physicochemical Properties \u0026amp; Good Compatibility With high purity and extremely low impurity content, the material exhibits stable properties at room temperature and pressure, good weak acid and alkali resistance, and is not easy to oxidize or decompose. It is compatible with various aqueous and organic systems and suitable for diverse electrode preparation and catalytic reaction processes. High Customization Carbon content, micro-morphology (nanoparticles, nanosheets, nanorods), particle size and specific surface area can be precisely adjusted according to customer requirements to adapt to different scientific research and industrial application scenarios. Application Fields Electrochemical Energy Storage It can be used as high-performance anode materials for lithium-ion batteries and sodium-ion batteries, as well as electrode materials for supercapacitors and hybrid capacitors. It effectively improves the specific capacity, rate performance and cycle stability of devices, and is widely used in portable energy storage, digital equipment, power batteries and other scenarios. Electrocatalysis It is suitable for electrocatalytic hydrogen evolution (HER), oxygen evolution (OER), overall water splitting, CO₂ electroreduction (CO₂RR), nitrogen reduction (NRR) and other reactions. As a low-cost and high-activity non-precious metal electrocatalytic material, it can replace expensive Pt-based and Ru-based catalysts. Environmental Catalysis It is applied in photocatalytic and Fenton-like catalytic degradation of water organic pollutants such as antibiotics, dyes and small organic molecules. It can also be used for industrial flue gas desulfurization, denitrification and VOCs catalytic oxidation, serving as an efficient and eco-friendly environmental treatment material. Electrochemical Sensing Relying on excellent electrochemical response, high sensitivity and selectivity, it can fabricate high-precision electrochemical sensors for heavy metal detection in water, trace organic detection in food and real-time monitoring of environmental pollutants.\u003c\/p\u003e","brand":"xfnano","offers":[{"title":"250mg D:300-400 nm 110496 \/ Store at room temperature in a dry, dark and sealed place \/ 365days","offer_id":57280538247546,"sku":"110496","price":109.38,"currency_code":"USD","in_stock":true},{"title":"500mg D:300-400 nm 110497 \/ Store at room temperature in a dry, dark and sealed place \/ 365days","offer_id":57280538280314,"sku":"110497","price":203.13,"currency_code":"USD","in_stock":true}],"thumbnail_url":"\/\/cdn.shopify.com\/s\/files\/1\/0907\/3606\/6938\/files\/1_27871cef-ce01-415a-9a0e-d29d5e516d17.png?v=1780024497","url":"https:\/\/chinanano.com\/es\/products\/comoo-c","provider":"xfnano","version":"1.0","type":"link"}