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Selective Reactivity of Myrcene for Vat Photopolymerization 3D Printing and Postfabrication Surface Modification

机译:用于增值税光聚合3D打印和后休息表面改性的粘液选择性反应性

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摘要

Biosourced materials are gaining interest industrially, but there are still limitations on the library of available materials suitable for advanced manufacturing, especially using photopolymerization-based processing techniques. Terpenes, such as myrcene, are naturally produced materials possessing structural features, specifically alkenes, that avail themselves for such techniques. Free-radical and anionic polymerization techniques were used to explore molecular architecture, such as branching, as well as molecular weight and dispersity on physical properties prior to the production of 3D printing photopolymer resins. The polymyrcene resins were printed into dogbones and mold templates for soft materials. Model reactions with monofunctional thiols were used to demonstrate the potential for postpolymerization and fabrication functionalization, accompany- ing a physical demonstration where the surface hydrophobicity of polymyrcene could be tuned from superhydrophobic when using an alkyl chain monothiol (greater than 100 degrees water contact angle) to a hydrophilic surface displaying a water contact angle of less than 45 degrees compared with that of the unmodified surface (similar to 60 degrees). Tunable bulk and surface properties are a unique feature for 3D printing materials and demonstrate the potential of polymyrcene and other biosourced photopolymers to a wide range of research applications.
机译:生物沉积材料正在工业上获得兴趣,但仍然有限制适用于先进制造的可用材料图书馆,特别是使用基于光聚合的加工技术。萜烯(如牛蛋白)天然生产具有结构特征,特异性烯烃的材料,可用于这种技术。自由基和阴离子聚合技术用于探索分子结构,例如分支,以及在生产3D印刷光聚合物树脂之前物理性质的分子量和分散性。将金属烯树脂印刷成托管和模具模板,用于软材料。使用单官能硫醇的模型反应来证明产态化和制造官能化的可能性,该物理示范在使用当使用烷基链半硫醇(大于100度水接触角)时从超细杂志调节的表面疏水性。与未修饰的表面(类似于60度)的亲水表面显示出小于45度的水接触角小于45度。可调谐散装和表面特性是3D打印材料的独特特征,并证明了多碳和其他生物沉积光聚合物的潜力到广泛的研究应用。

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