三乙基硅烷
路易斯酸
化学
重氮甲烷
硅烷
聚合
还原剂
高分子化学
聚合物
产量(工程)
布朗斯特德-洛瑞酸碱理论
有机化学
催化作用
材料科学
冶金
作者
Serter Luleburgaz,Ümit Tunca,Hakan Durmaz
标识
DOI:10.1002/macp.202300063
摘要
Abstract The reductive etherification reaction (RER) of carbonyl groups (aldehydes or ketones) through silane as a reducing agent together with Bronsted or Lewis acid affords the synthesis of symmetrical and unsymmetrical ethers. This strategy is applied at the macromolecular level for the first time in 1993, and isophthalaldehyde is self‐polymerized in the presence of triethylsilane (Et 3 SiH)/ tritylperchlorate (TrClO 4 ) to yield polyethers with low to moderate molecular weights. Next, the polyethers with alternating structures are achieved by reacting isophthalaldehyde with bis(trimethylsilyl) ethers or diols as comonomers using reducing agent silane and Lewis acid. Moreover, in recent years, it is shown that polyether synthesis and post‐polymerization modification (PPM) of polymers proceeds smoothly and effectively with the RER strategy in the presence of chlorodimethylsilane (CDMS), which acts as both a reducing agent and a Lewis acid.
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