4.6 Article

Moisture-Assisted Formation of High-Quality Silver Nanowire Transparent Conductive Films with Low Junction Resistance

Journal

COATINGS
Volume 11, Issue 6, Pages -

Publisher

MDPI
DOI: 10.3390/coatings11060671

Keywords

silver nanowires; transparent conductive film; moisture treatment; capillary condensation; optoelectronic properties

Funding

  1. National Natural Science Foundation of China [62041405, 51802131]
  2. Natural Science Foundation of Jiangxi Province, China [20192BAB217012, 20202BAB202011, 20202BABL214011]
  3. Key R&D Program of Jiangxi Province, China [20192BBE50056, 20171BBE50053]
  4. Postgraduate Innovation Special Fund Project of Jiangxi Province, China [YC2020-S422]

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Silver nanowire (AgNWs) transparent conductive film (TCF) treated with moisture showed improved conductivity and more uniform electrical properties. Bending and adhesion tests demonstrated good mechanical bending resistance and environmental stability even after moisture treatment.
Silver nanowire (AgNWs) transparent conductive film (TCF) is considered to be the most favorable material to replace indium tin oxide (ITO) as the next-generation transparent conductive film. However, the disadvantages of AgNWs, such as easy oxidation and high wire-wire junction resistance, dramatically limit its commercial application. In this paper, moisture treatment was adopted, and water was dripped on the surface of AgNWs film or breathed on the surface so that the surface was covered with a layer of water vapor. The morphology of silver nanowire mesh nodes is complex, and the curvature is large. According to the capillary condensation theory, water molecules preferentially condense near the geometric surface with significant curvature. The capillary force is generated, making the wire-wire junction of AgNWs mesh bond tightly, resulting in good ohmic contact. The experimental results show that AgNWs-TCF treated by moisture has better conductivity, with an average sheet resistance of 20 omega/sq and more uniform electrical properties. The bending test and adhesion test showed that AgNWs-TCF treated by moisture still exhibited good mechanical bending resistance and environmental stability.

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