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Expected to register 4.1% CAGR. Valued at $3 billion in 2020.
May 5, 2021
By: Anthony Locicero
Copy editor, New York Post
According to a new market research report “Conductive Inks Market by Type (Silver, Copper, Carbon/Graphene, Carbon Nanotube, Conductive Polymer), Application (Photovoltaics, Rfid, Pcb, Membrane Switches, Displays, Bio-Sensors, Thermal Heating), & Region – Global Forecast To 2025,” the conductive inks market is projected to grow from $3 billion in 2020 to $3.7 billion by 2025, at a CAGR of 4.1% during the forecast period.
The growth of the market can be attributed to the increasing consumption of conductive inks from various applications such as photovoltaics, RFID, PCB, membrane switches, displays, biosensors, and thermal heating, among others.
Governments worldwide have imposed environmental regulations to encourage industries for reducing the number of heavy materials used in any device by replacing them with lightweight advanced materials.
Along with this factor, the consumer preference for small and lightweight electronics has increased the demand for the miniaturization of products in the consumer electronics industry.
Lightweight construction is used to improve functional characteristics, reduce material input, and save energy.
Conductive inks are efficient, effective, and reliable and are widely used as a replacement for conventional wire and circuit arrangement to enhance efficiency and reduce the weight of electronic components.
The use of conductive inks offers the following properties:
Conductive inks are produced either by incorporating different types of metals such as silver and copper or by using carbon particles.
Carbon particles are preferred in many applications as they offer adequate technical properties at a low cost.
In comparison to other metals, carbon inks have relatively less and unreliable conductivity. While using carbon particles, direct conductivity can only be achieved through curing, but this is a complicated and expensive process.
The major factor acting as a restraint for the conductive inks market growth is the lack of chemical compatibility with most of the polymers, which is necessary to provide mechanical endurance.
Also, there is a need to develop technologies that can impart long-term stability of conductive inks for commercial purposes. This issue is mainly faced with nanoparticle inks, as the technologies required for its use are expensive.
Emerging applications have increased the need for optimizing the use of conductive inks in specialized printing processes.
Despite these shortcomings, the increased focus on innovation and R&D activities is expected to provide cost-efficient and reliable technologies for conductive inks in the future.
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