Electric response intelligent high molecular catalyst and its preparing process

A smart polymer and catalyst technology, applied in chemical instruments and methods, physical/chemical process catalysts, organic compounds/hydrides/coordination complex catalysts, etc., can solve the problem that substrates are difficult to access catalytic groups, catalytic groups Unable to effectively exert catalytic performance, accessibility of polymer catalysts is difficult to achieve industrial application, etc., to achieve the effect of improving catalytic activity

Inactive Publication Date: 2006-04-26
TIANJIN UNIVERSITY OF TECHNOLOGY
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  • Summary
  • Abstract
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  • Application Information

AI Technical Summary

Problems solved by technology

The catalytic activity of these simulated enzymes not only cannot match that of natural enzymes, but is even significantly lower than that of the corresponding small molecule catalysts. The catalytic group inside the molecule makes the catalytic group unable to effectively perform the catalytic performance, which is the so-called "accessibility problem"
The problem of accessibility is a problem that has plagued many polymer catalysts so far and it is difficult to achieve industrial applications.

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment

[0014] Embodiment: a kind of electroresponse intelligent macromolecular catalyst is characterized in that it is made of vinylimidazole, 2-acrylic acid amino-2-methyl-1-propanesulfonic acid, N, N'-methylenebisacrylamide and Composed of added reagents, said vinylimidazole accounts for 35%, 2-acrylic acid amino-2-methyl-1-propanesulfonic acid accounts for 35%, N,N'-methylenebisacrylamide accounts for 16%, The reagent added at the same time accounted for 14%.

[0015] The above-mentioned added reagent can be sorbitan monostearic acid, potassium persulfate and water, wherein sorbitan monostearic acid accounts for 2% of the total amount, potassium persulfate accounts for 4% of the total amount, and water accounts for 4% of the total amount. 8% of the total.

[0016] The above-mentioned preparation method of the electro-responsive intelligent polymer catalyst is characterized in that it is composed of the following steps:

[0017] Step 1: From the raw materials vinylimidazole, 2-ac...

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Abstract

An electro-responsive intelligent polymer catalyst and a preparation method thereof, comprising 40% to 20% of vinylimidazole, 40% to 20% of 2-acrylic acid amino-2-methyl-1-propanesulfonic acid, N, N'- 11% to 22% of methylene bisacrylamide forms a cross-linked polymer compound, and at the same time, it is composed of 9% to 18% of reagents; the preparation method is: Step 1: from raw materials vinylimidazole, 2-acrylic acid amino-2-methanol Radical-1-propanesulfonic acid and N, N'-methylenebisacrylamide were polymerized by radical emulsion to obtain a cross-linked electro-responsive intelligent polymer catalyst; step 2: test of catalytic activity. The advantages of the present invention: 1. The electrical response intelligent polymer catalyst introduces flexibility and mobility into the structure of the polymer catalyst, which can solve the accessibility problem of the polymer catalyst and improve the catalytic activity; 2. The electrical response intelligence is high Molecular catalysts can be used as an artificial enzyme model to simulate the flexibility of enzymes.

Description

[0001] (1) Fields: [0002] The invention belongs to a polymer catalyst and a preparation method thereof, in particular to an electric response intelligent polymer catalyst and a preparation method thereof. (two) background technology: [0003] Currently, in the field of protein function research, the mechanism of high catalytic activity of enzyme proteins is a so far unsolved problem. With the deepening of protein structure research and catalyst theory research, various speculations and hypotheses about the catalytic mechanism of enzymes have been frequently proposed, but the theoretical basis is still based on the "lock-key" model and induced fit model proposed earlier. However, these two models are only qualitative descriptions of the enzyme mechanism, and do not give precise quantitative or semi-quantitative predictability. The low success rate of computer-aided drug design and discovery further shows that the above two models are not strictly valid. That is to say, in a...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): B01J31/06
Inventor 黄积涛张嘉琪郑嗣华卢刚谢秀荣黄卫洪
Owner TIANJIN UNIVERSITY OF TECHNOLOGY
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