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Transparent Conductive Film for Display Market 2020: Scenario Highlighting Major Drivers, Size, Share, Trends, Growth, Competitive Strategies and Forecast till 2023

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Apr 21, 2020 (Heraldkeepers) -- The transparent conductive film for display market 2020 can touch a valuation of USD 5.74 Billion by 2023, says Market Research Future (MRFR). MRFR also believes that the global market has the potential to achieve a decent growth rate of 8.8% from 2017 to 2023, considered to be the forecast period.

Competent and Influential Players Prevalent in Global Transparent Conductive Films for Displays Market Include:

Canatu Oy (Finland), TDK Corporation (Japan), Cambrios Technologies Corporation (U.S.), C3Nano (U.S.), Gunze Ltd. (Japan), Teijin Ltd. (Japan), Toyobo Co., Ltd. (Japan), Dontech Inc. (U.S.), Blue Nano Inc. (U.S.), and Nitto Denko Corporation (Japan).

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https://www.marketresearchfuture.com/sample_request/3633

A transparent conductive film refers to an electricity conducting device which is manufactured in photovoltaic and touch-screen modules. A transparent conductive film is used in a wide array of consumer electronics. The material has a high conductivity which aids the gadgets in conducting more electricity and gaining more power. This, in turn, has led to latent demand for the transparent conductive film for displays in the consumer electronics industry. Moreover, increasing usage of organic light-emitting diodes technology in lighting is expected to have a positive impact on the demand for transparent conductive films.

Primary Drivers and Key Barriers:

Transparent conductive films (TCFs) are widely used to manufacture a number of consumer electronic devices such as tablets, LCDs, smartphones, LEDs, laptops, as well as other display devices. TCFs are used in these devices given their characteristics such as high transparency, surface resistivity, superior durability, and electrical conductivity. Because of these properties, TCFs are used to manufacture consumer electronic devices such as tablets, LCDs, smartphones, LEDs, laptops, among others.

The consumer electronics sector is expanding significantly, thanks to the continuous emergence of technologically advanced devices, increasing internet usage, mounting expendable income the people, and the declining cost of consumer electronic devices, including smartphones. To illustrate, the consumer electronics and appliances manufacturers association (CEAMA) says that in India, the consumer electronics market is projected to achieve a growth rate of close to 9% in the near future. Thus, the rapid expansion of the consumer electronics market all over the world is touted to boost the consumption rate of transparent conductive films in the following years.

Flexibility, minimal reflection, robustness and slenderness coupled with the lower power consumption properties induce the market growth. Displays as well as photovoltaic applications hold a lot of potential and can play a significant role in market growth. Additionally, soaring demand for tablets, notebooks and PCs can offer the required momentum to the market in the years to come.

Segmental Analysis:

The global transparent conductive films for display market is studied for several segments carried out on the basis of material, device, end-users, and region. By material, the global transparent conductive films for display market is segmented into carbon nanotubes, metal mesh, ITO on PET, ITO on glass, and silver nanowires. Owing to fluctuating prices and inadequate geographical availability of indium, a growing need for non-ITO-based transparent conductive films for display is felt. Conductive nanoparticles and other fixed metal oxide and conductive polymers are anticipated to replace ITO-based transparent films.

Based on devices, the global transparent conductive films for display market is segmented into wearable devices, LCDs, notebooks, smartphones, and tablets. Among these segments, the smartphone segment is estimated to capture the largest share of the market over the forecast period.

On the basis of end-users, the global transparent conductive films for display market is segmented into IT & telecommunication, automotive & aerospace, healthcare, government & defense, enterprise & industrial applications, media & entertainment, and consumer electronics.

Detailed Regional Analysis:

The transparent conductive film for display market is studied for the regional segments of North America, Asia Pacific (APAC), Europe, and Rest of the World (RoW). Asia Pacific and North America are expected to pose as significant markets for the transparent conductive film for display. North America held the principal share of the global transparent conductive films market at the beginning of the forecast period, which was followed by Europe in the second position.

Within Asia Pacific, Japan is deemed to pose as a key consumer for transparent conductive films for display. Japan vaunts the presence of some of the most prominent players in the consumer electronics industry, hence, fostering higher growth as compared to the other regional segments. Therefore, rising demand for consumer electronics has consequently resulted in higher consumption of transparent conductive film for displays. Moreover, owing to a proliferation in the number of startups and small enterprises in the APAC region, the production and consumption of transparent conductive coating in several applications such as photovoltaic, consumer electronics, OLED, and EMI shielding is witnessing fast-paced growth owing to the establishment of new manufacturing facilities.

Industry Updates:

March 2019: C3Nano recently announced that it added 13 international patents to its patents portfolio. The company presently holds more than 20 patents in the transparent conductive inks and films innovation, with 45 more pending for approval.

Table of Content:

1 MARKET INTRODUCTION

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5. MARKET FACTOR ANALYSIS

5.1 PORTER'S FIVE FORCES ANALYSIS

5.2 SUPPLY CHAIN ANALYSIS

6 TRANSPARENT CONDUCTIVE FILM FOR DISPLAY MARKET

6.1 INTRODUCTION

6.2 MARKET STATISTICS

6.2.1 BY MATERIAL

6.2.1.1 METAL MESH

6.2.1.2 SILVER NANOWIRES

6.2.1.3 ITO ON PET

6.2.1.4 ITO ON GLASS

6.2.1.5 CARBON NANOTUBES

6.2.1.6 OTHERS

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