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Recently, researchers have developed a polymer that can be produced by a chemical reaction, a strong plastic called strong carbonate. This panel can be used as a building material or in applications such as safety goggles and water bottles.

A group of researchers has developed a faster and simpler method of making sulphur polymers that can reduce the cost of large-scale production. The researchers tested the reaction and added a newly developed catalyst to the SuFEx reaction, commonly known as sulfur (VI) fluoride exchange, to accelerate its reaction, from small to water bottles and mobile phone cases to medical devices and bulletproof glass.

When new useful molecules are discovered, the simple and effective reactions that can be used initially by chemists are few, not to mention the need to meet the cost-effective industrial production requirements. According to the example under natural conditions, the click chemistry reaction follows a simple protocol, using readily available starting materials, and using a benign starting reagent under mild reaction conditions. Click chemistry has become a valuable tool for generating large libraries of potentially useful compounds and seeks to discover new drugs and materials for the industry.

Newly developed chemical technology makes polysulfate plastics more competitive than polycarbonate for safety goggles

The polymer is assembled from smaller molecules, just as a necklace is made up of the same beads. When using the SuFEx technology to make polysulfonate "necklaces", the researchers used vinylsulfonyl fluoride-aniline and bisphenol ether as good "beads" and found that using fluoride as a catalyst can complete the previous slow reaction. Click "." The researchers found that high-efficiency reactions benefited from conversion rates as high as 99%. It took less than an hour from the start of the reaction to the formation of the product.

The researchers found that the new reaction required 100 to 1000 times less catalyst than other known methods, which could significantly reduce hazardous waste. Fluoride salts are also much less corrosive than previously used catalysts, and the broader starting substrate acts as a "bead," the researchers said, hoping they could lead them through a series of industrial processes.

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