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    Home > New Chemical Materials > New Chemical Materials Products News > The Synthetic Routes of Poly[imino(1-oxo-1,12-dodecanediyl)]

    The Synthetic Routes of Poly[imino(1-oxo-1,12-dodecanediyl)]

    • Last Update: 2023-04-29
    • Source: Internet
    • Author: User
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    Poly[imino(1-oxo-1,12-dodecanediyl)] is a synthetic polymer that has numerous applications in the chemical industry.
    This polymer is commonly used as a catalyst support material, a separation medium, and as a scavenger of poisonous gases.
    The synthetic routes of Poly[imino(1-oxo-1,12-dodecanediyl)] are varied and can be broadly classified into two categories: the chemical route and the polymerisation route.


    The Chemical Route


    The chemical route is the most common method used to synthesize Poly[imino(1-oxo-1,12-dodecanediyl)].
    This route involves the reaction of anhydrous zinc oxide with an aqueous solution of sodium hydroxide to form a intermediate compound, which is then hydrolyzed to form the final polymer.
    The synthesis of Poly[imino(1-oxo-1,12-dodecanediyl)] via the chemical route is a multi-step process that involves several reaction stages.


    The Polymerisation Route


    The polymerisation route is another method used to synthesize Poly[imino(1-oxo-1,12-dodecanediyl)].
    This route involves the reaction of a monomer, such as 1,3-diisopropyl-2-imino-propane, with a polymerisation initiator, such as potassium persulfate, to form the final polymer.
    The synthesis of Poly[imino(1-oxo-1,12-dodecanediyl)] via the polymerisation route is a one-step process that can be carried out in a matter of hours.


    Advantages of Poly[imino(1-oxo-1,12-dodecanediyl)]


    Poly[imino(1-oxo-1,12-dodecanediyl)] has several advantages that make it an ideal material for use in the chemical industry.
    One of the primary advantages of this polymer is its ability to act as a catalyst support material.
    The porous structure of Poly[imino(1-oxo-1,12-dodecanediyl)] makes it an ideal material for supporting catalysts, which can greatly enhance the efficiency of chemical reactions.


    Another advantage of Poly[imino(1-oxo-1,12-dodecanediyl)] is its ability to act as a separation medium.
    The polymer's porous structure makes it an ideal material for use in liquid-liquid extraction and gas absorption applications.
    Additionally, Poly[imino(1-oxo-1,12-dodecanediyl)] can be used to remove poisonous gases, such as carbon monoxide and hydrogen sulfide, from industrial gas streams.


    Applications of Poly[imino(1-oxo-1,12-dodecanediyl)]


    Poly[imino(1-oxo-1,12-dodecanediyl)] has numerous applications in the chemical industry.
    One of the most common applications of this polymer is as a catalyst support material.
    Poly[imino(1-oxo-1,12-dodecanediyl)] is used to support a variety of catalysts, including metal oxides, zeolites, and various types of transition metal catalysts.


    Another application of Poly[imino(1-oxo-1,12-dodecanediyl)] is as a separation medium.
    The polymer's porous structure makes it an ideal material for use in liquid-liquid extraction and gas absorption applications.
    Poly[imino(1-oxo-1,12-dodecanediyl)] is used in a variety of industries, including pharmaceuticals, food and beverages, and environmental protection.


    Finally, Poly[imino(1-oxo


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