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Synthesizing dicarboxylic acids and hydrogen simultaneously from diols

Date:
July 30, 2020
Source:
Kyoto University
Summary:
Researchers develop a safer and more efficient way to produce dicarboxylic acid. Using an iridium catalyst bound to a bipyridonate ligand, researchers were able to synthesize dicarboxylic acids from aqueous diols, with the added benefit of generating hydrogen as a byproduct.
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FULL STORY

Every year, the chemical industry makes trillions of dollars synthesizing the countless chemical compounds we use every day.

From pharmaceuticals for keeping you healthy to polyester woven into your shirt, industrial processes turn simple chemicals into complex, valuable compounds. Researchers in turn work constantly to develop new substances as well as safer and more efficient methods of production.

In a paper published inChemSusChem, researchers from Kyoto University's Graduate School of Human and Environmental Studies describe how they have significantly improved the process that leads to polymers and plasticizers. And as an added bonus, their method generates hydrogen as a byproduct.

"We use renewable chemical compounds collectively known asdiolsto dramatically change the synthesis of dicarboxylic acids," explains corresponding author Ken-ichi Fujita, "These are needed to produce polymers, plasticizers, and lubricants."

现有的生产方法,基于oxidation of hydrocarbons using toxic oxidants, generate harmful waste products. Knowledge of this motivated the team to work on a new method of synthesis, changing the initial compound along with the catalyst.

"We began by looking at liquid solutions ofdiols, which are more renewable than starting materials previously used," continues Fujita.

"Then we needed to find a catalyst, and we settled on using iridium bound to a bipyridonate ligand."

The team were pleased to find that combining thediolswith the new catalyst generated dicarboxylic acids with greater efficiency and significantly more yield, as well as four equivalents of hydrogen for every unit ofdiols.

Developing more efficient and safer methods of compound production is vital for industrial organic chemistry, and for the global environment.

"It is a pleasant surprise to see how efficient our new process is," concludes Fujita. "We hope to continue to improve safety and efficiency as we discover alternative chemical processes that are valuable to all humanity."

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Story Source:

Materialsprovided byKyoto University.注意:内容可能被编辑风格d length.


Journal Reference:

  1. Genki Toyooka, Ken‐ichi Fujita.Synthesis of Dicarboxylic Acids from Aqueous Solutions of Diols with Hydrogen Evolution Catalyzed by an Iridium Complex.ChemSusChem, 2020; DOI:10.1002/cssc.202001052

Cite This Page:

Kyoto University. "Synthesizing dicarboxylic acids and hydrogen simultaneously from diols." ScienceDaily. ScienceDaily, 30 July 2020. /releases/2020/07/200730123641.htm>.
Kyoto University. (2020, July 30). Synthesizing dicarboxylic acids and hydrogen simultaneously from diols.ScienceDaily. Retrieved September 6, 2023 from www.koonmotors.com/releases/2020/07/200730123641.htm
Kyoto University. "Synthesizing dicarboxylic acids and hydrogen simultaneously from diols." ScienceDaily. www.koonmotors.com/releases/2020/07/200730123641.htm (accessed September 6, 2023).

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