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Smart Glass Market Size to Hit US$ 7550.5 Million by 2028, Exhibit a CAGR of 6.55% | Global Smart/Switchable Glass Industry Trends, Share, Value, Analysis & Forecast Report by Facts & Factors
Facts & Factors
Facts & Factors

[224+ Pages Report] According to Facts and Factors, the Global Smart/Switchable Glass Market size & share revenue was valued at around USD 4,650.5 million in 2021 and is estimated to grow about USD 7550.5 million by 2028, at a CAGR of approximately 6.55% between 2022 and 2028. The key market players are listed in the report with their sales, revenues and strategies are Royal DSM, Mitsubishi Chemicals, Ashland Inc., Chevron Philips Chemical Company, Nova Chemicals Corporation, IneosStyrolution Group GmbH, and others.

NEW YORK, United States, Sept. 23, 2022 (GLOBE NEWSWIRE) -- According toFacts and Factors has published a new research report titled “Smart/Switchable Glass Market Size, Share, Growth Analysis Report By End-User (Automotive & Transportation, Architecture & Construction, Electronics, Aerospace & Defense, and Others), By Technology (Polymer Dispersed Liquid Crystal (PDLC), Photochromic, Suspended Particle Devices (SPD) Glass, Thermochromic, and Others), and By Region - Global and Regional Industry Insights, Overview, Comprehensive Analysis, Trends, Statistical Research, Market Intelligence, Historical Data and Forecast 2022 – 2028” in its research database.

“According to the latest research study, the demand of global Smart/Switchable Glass Market size & share in terms of revenue was valued at USD 4,650.5 million in 2021 and it is expected to surpass around USD 7550.5 million mark by 2028, growing at a compound annual growth rate (CAGR) of approximately 6.55% during the forecast period 2022 to 2028.”

Smart/Switchable Glass market Overview:

Smart or switchable glass is capable of switching between two states namely an opaque state and a clear state. It is impossible to see through opaque glasses while clear classes are transparent. The switch between the states can be achieved with the help of a remote button. Although there are multiple ways of manufacturing smart glass, there are 3 main ways of achieving this. These three methods include the glass being exposed to heat, light, or an electrical current. The end result of employing all three methods is the same; however, there is a vast difference between the mechanics of these systems.

For instance, glasses using photochromic methods contain small molecules of silver halide that are suspended within the glass, and when exposed to sunlight, the molecules undergo a reaction to create a sheet of silver that does not transmit light. In thermochromic glasses, the catalyst is the heat from the sun rays and not the light itself, which leads to the glass becoming tinted. In the case of electronic glass, the switching occurs with the push of a button.