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Fabrication of Metal-Organic Framework Derived Nanomaterials and Their Electrochemical ApplicationsFabrication of Metal-Organic Framework Derived Nanomaterials and Their Electrochemical ApplicationsFabrication of Metal-Organic Framework Derived Nanomaterials and Their Electrochemical Applications

Fabrication of Metal-Organic Framework Derived Nanomaterials and Their Electrochemical Applications

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Current price: $160.95
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Fabrication of Metal-Organic Framework Derived Nanomaterials and Their Electrochemical Applications

Coles

Fabrication of Metal-Organic Framework Derived Nanomaterials and Their Electrochemical Applications

By None

Current price: $160.95
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Size: Hardcover

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This thesis systematically introduces readers to a new metal-organic framework approach to fabricating nanostructured materials for electrochemical applications. Based on the metal-organic framework (MOF) approach, it also demonstrates the latest ideas on how to create optimal MOF and MOF-derived nanomaterials for electrochemical reactions under controlled conditions. The thesis offers a valuable resource for researchers who want to understand electrochemical reactions at nanoscale and optimize materials from rational design to achieve enhanced electrochemical performance. It also serves as a useful reference guide to fundamental research on advanced electrochemical energy storage materials and the synthesis of nanostructured materials.
This thesis systematically introduces readers to a new metal-organic framework approach to fabricating nanostructured materials for electrochemical applications. Based on the metal-organic framework (MOF) approach, it also demonstrates the latest ideas on how to create optimal MOF and MOF-derived nanomaterials for electrochemical reactions under controlled conditions. The thesis offers a valuable resource for researchers who want to understand electrochemical reactions at nanoscale and optimize materials from rational design to achieve enhanced electrochemical performance. It also serves as a useful reference guide to fundamental research on advanced electrochemical energy storage materials and the synthesis of nanostructured materials.

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