Synthesis of dendronized PAMAM grafted ROMP polymers

M. Islam, I. C. Çetinkaya, T. Eren, M. Tülü
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引用次数: 0

Abstract

Abstract Oxanorbornene cored 0.5, 1.5 and 2.5 generation ester terminated PAMAM dendronized monomers with 2 and 6 carbon-containing alkyl spacer in the middle of oxanorbornene core and dendronized branching were synthesized. Monomers were polymerized through the ring-opening metathesis polymerization (ROMP) technique by using 2nd and 3rd generation Grubbs catalysts to get dendronized ROMP polymers. It was found that Grubbs 3rd generation catalyst works well for 0.5 generation dendronized ROMP polymer whereas Grubbs 2nd generation catalyst works for the higher generation. We also found the linker effect during polymerization as six-carbon linker monomers polymerize with high yield along with higher generation. Finally, dendronized ROMP-based PAMAM encapsulated zero valent Cu nanoparticle was synthesized by using a reducing agent, NaBH4. The catalytic activity of this nanoparticle was further investigated from the reduction of 4-nitrophenol to 4-aminophenol. Graphical Abstract
枝状PAMAM接枝ROMP聚合物的合成
摘要:合成了以0.5、1.5和2.5代酯端端PAMAM为核心,以2和6个含碳烷基间隔剂为中心并进行枝状分支的氧生冰片烯枝状单体。采用第二代和第三代Grubbs催化剂,通过开环复分解聚合(ROMP)技术对单体进行聚合,得到树突化ROMP聚合物。研究发现,Grubbs第三代催化剂适用于0.5代的枝化ROMP聚合物,而Grubbs第二代催化剂适用于更高代的枝化ROMP聚合物。在聚合过程中还发现了连接剂效应,六碳连接剂单体的聚合产率随代数的增加而增加。最后,以还原剂NaBH4为原料,合成了枝状rom基PAMAM包封的零价Cu纳米颗粒。从4-硝基苯酚还原为4-氨基苯酚开始,进一步研究了该纳米颗粒的催化活性。图形抽象
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