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Carbon nanotubes exhibit mechanical strength approximately 100 times greater than iron, coupled with electrical conductivity comparable to copper. Moreover, their high thermal conductivity and the ability to display properties akin to both metals and semiconductors based on molecular chain arrangement make them highly versatile. While sharing similarities with graphene, when employed as a coating, carbon nanotubes elevate performance and functionality in terms of adhesion, durability, and frictional properties, surpassing graphene on various fronts.

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