Metal–organic framework-derived CuO tube-like nanofibers with high surface area and abundant porosities for enhanced room-temperature NO2 sensing properties
Author:
Publisher
Elsevier BV
Subject
Materials Chemistry,Metals and Alloys,Mechanical Engineering,Mechanics of Materials
Reference60 articles.
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1. Gas-sensitive performance of metal-organic framework-derived CuO NPs/Ti3C2TX MXene heterostructures for efficient NO2 detection at room temperature;Journal of Alloys and Compounds;2024-04
2. CuO thin films deposited by the dip-coating method as acetone vapor sensors: Effect of their thickness and precursor solution molarity;Micro and Nanostructures;2024-03
3. Highly sensitive and selective room-temperature NO sensor based on rich-oxygen vacancy CuO nanoflakes;Materials Letters;2024-02
4. Design engineering of MOF-derived ZnO porous nanofibers functionalized with Pt clusters: Significantly improved acetone sensing properties;Sensors and Actuators B: Chemical;2024-02
5. Cu-MOF-Derived C-Doped CuO/Cu2O Hollow Nano-Octahedrons for Room-Temperature NO2 Sensing at the ppb Level;ACS Applied Nano Materials;2024-01-25
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