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Catalog Number:
47071
CAS Number:
7440-50-8
Copper nanowires immersed in ethanol 5g/25ml (300±100 nm dia, ≥ 5 micron length)
Hazmat
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$216.00 /5G
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Product Information

Copper nanowires immersed in ethanol are a cutting-edge material with significant potential in various applications, particularly in the fields of electronics and nanotechnology. With a diameter of approximately 300±100 nm and a length of around 5 microns, these nanowires exhibit remarkable electrical conductivity and flexibility, making them ideal for use in transparent conductive films, sensors, and advanced electronic devices. Their unique properties allow for enhanced performance in applications such as touch screens, solar cells, and flexible displays, where traditional materials may fall short.

Moreover, the use of ethanol as a medium for these copper nanowires facilitates easy handling and integration into various processes, ensuring compatibility with existing manufacturing techniques. Researchers and industry professionals can leverage these nanowires to develop innovative solutions that require high conductivity and lightweight materials. The combination of excellent electrical properties and ease of use positions copper nanowires as a superior choice compared to other conductive materials, paving the way for advancements in next-generation electronic applications.

CAS Number
7440-50-8
Molecular Formula
Cu
Molecular Weight
63.55
PubChem ID
23978
Appearance
Brown red wires
Mesh Size
APS 300±100 nm dia, =
Conditions
Store at RT
General Information
CAS Number
7440-50-8
Molecular Formula
Cu
Molecular Weight
63.55
PubChem ID
23978
Appearance
Brown red wires
Mesh Size
APS 300±100 nm dia, =
Conditions
Store at RT
Properties
Additional property information coming soon!
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Safety and Regulations
Hazmat
Yes
Antibiotic
No
DEA-regulated
No
Warnings
-
Applications

Copper nanowires immersed in ethanol is widely utilized in research focused on:

  • Flexible Electronics: These nanowires serve as conductive materials for flexible electronic devices, enhancing their performance while maintaining flexibility and lightweight properties.
  • Transparent Conductors: In applications like touchscreens and solar cells, copper nanowires provide a cost-effective alternative to indium tin oxide (ITO), offering excellent conductivity and transparency.
  • Energy Storage: They are used in supercapacitors and batteries, improving charge storage capacity and efficiency due to their high surface area and conductivity.
  • Biomedical Applications: Copper nanowires are explored for use in biosensors and drug delivery systems, leveraging their biocompatibility and electrical properties to enhance detection and therapeutic efficacy.
  • Environmental Remediation: These nanowires can be employed in water treatment processes to remove pollutants, thanks to their high reactivity and surface area, making them effective in capturing contaminants.

Citations