An efficient catalytic and solvent‐free method for the synthesis of mono‐organofunctionalized polymethylhydrosiloxane derivatives

Author:

He Daguang12,Gui Xuefeng134,Dong Yonglu256,Lin Shudong12345,Tu Yuanyuan134,Hu Jiwen12345ORCID,Li Shi12,Zhao Jihe12

Affiliation:

1. Guangzhou Institute of Chemistry Chinese Academy of Sciences Guangzhou People's Republic of China

2. University of Chinese Academy of Sciences Beijing People's Republic of China

3. Guangdong Provincial Key Laboratory of Organic Polymer Materials for Electronics Guangzhou People's Republic of China

4. CAS Engineering Laboratory for Special Fine Chemicals Guangzhou People's Republic of China

5. CASH GCC Shaoguan Research Institute of Advanced Materials Nanxiong People's Republic of China

6. Management Committee of Shaoguan NanXiong Hi‐tech Industry Development Zone Nanxiong People's Republic of China

Abstract

AbstractSynthetic reactions with distinctive physicochemical properties and the study of functional groups during synthesis provide an effective way to design polymers on an individual basis. The functionalization of polymethylhydrosiloxane (PMHS) has been performed via hydrosilylation of PMHS with selected alkenes with different active functional groups. In the reaction of PMHS with selected CC bond‐containing olefins in solvent‐free systems, the most efficient catalyst system can be selected to obtain the PMHS reagents to introduce the desired functional groups while generating only regional isomeric products. On‐line real‐time monitoring techniques, in situ Fourier‐transform infrared (FT‐IR), were utilized to determine the chemical reaction rates and reaction conversions for each chemical reaction, and to assess the merits of the reaction systems. In addition, the structures of the functionalized polymers were characterized using FT‐IR spectroscopy, nuclear magnetic resonance (NMR), and gel permeation chromatography (GPC). The kinetic parameters of typical chemical reaction processes were calculated using Kissinger's equation and Ozawa's equation. The comparisons between solvent and solvent‐free systems were carried out under the same conditions, and the statistics revealed that the solvent‐free system was more efficient than its solvent‐based counterpart. This research on the introduction of monofunctional groups into PMHS side chains might pave the way for a variety of diverse functional groups, thus allowing for the further application of PMHS and its derivatives.

Funder

Guangzhou Municipal Science and Technology Project

Natural Science Foundation of Guangdong Province

National Natural Science Foundation of China

Publisher

Wiley

Subject

Polymers and Plastics

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