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首页> 外文期刊>Angewandte Chemie >Vinyl Sulfonate Esters: Efficient Chain Transfer Agents for the 3D Printing of Tough Photopolymers without Retardation
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Vinyl Sulfonate Esters: Efficient Chain Transfer Agents for the 3D Printing of Tough Photopolymers without Retardation

机译:乙烯基磺酸酯:用于3D印刷的高效链转移剂没有延迟的坚韧的光聚合物

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摘要

The formation of networks through light-initiated radical polymerization allows little freedom for tailored network design. The resulting inhomogeneous network architectures and brittle material behavior of such glassy-type networks limit the commercial application of photopolymers in 3D printing, biomedicine, and microelectronics. An ester-activated vinyl sulfonate ester (EVS) is presented for the rapid formation of tailored methacrylate-based networks. The chain transfer step induced by EVS reduces the kinetic chain length of the photopolymer, thus shifting the gel point to higher conversion, which results in reduced shrinkage stress and higher overall conversion. The resulting, more homogeneous network is responsible for the high toughness of the material. The unique property of EVS to promote nearly retardation-free polymerization can be attributed to the fact that after the transfer step no polymerizable double bond is formed, as is usually seen in classical chain transfer agents. Laser flash photolysis, theoretical calculations, and photoreactor studies were used to elucidate the fast chain transfer reaction and exceptional regulating ability of EVS. Final photopolymer networks exhibit improved mechanical performance making EVS an outstanding candidate for the 3D printing of tough photopolymers.
机译:通过光发起的自由基聚合形成网络允许定制网络设计的自由度。所得到的不均匀网络架构和这种玻璃型网络的脆性材料行为限制了3D印刷,生物医学和微电子中光聚合物的商业应用。提出了一种酯活化的乙烯基磺酸酯(EVS),用于快速形成量定制的基于甲基丙烯酸酯类网络。 EVS诱导的链转移步骤降低了光聚合物的动力链长度,从而使凝胶点转化为更高的转化,这导致收缩应力和更高的总转化率降低。由此产生的更均匀的网络负责材料的高韧性。 EVS以促进自由延迟聚合的EV的独特性能可归因于在转移步骤之后形成可聚合的双键,通常在经典链转移剂中观察。激光闪光光解,理论计算和光反应器研究用于阐明EVS的快速链转移反应和特殊的调节能力。最终的光聚合物网络表现出改善的机械性能,使难以光彩聚合物的3D印刷的优秀候选者。

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