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具有氢键集成网络的机械坚固且可再加工的丙烯酸酯类 Vitrimers 用于光 3D 打印

Mechanically Robust and Reprocessable Acrylate Vitrimers with Hydrogen-Bond-Integrated Networks for Photo-3D Printing.

作者信息

Gao Hong, Sun Yingchun, Wang Miaomiao, Wang Zhen, Han Guoqiang, Jin Ling, Lin Peng, Xia Youyi, Zhang Kui

机构信息

School of Chemistry and Chemical Engineering, Anhui University of Technology, Ma'anshan, Anhui 243032, China.

出版信息

ACS Appl Mater Interfaces. 2021 Jan 13;13(1):1581-1591. doi: 10.1021/acsami.0c19520. Epub 2020 Dec 23.

Abstract

Reprocessable acrylate vitrimer needs to enhance its strength to expand the application in photo-three-dimensional (photo-3D) printing. However, the methods for improving mechanical properties by the addition of nanofillers or a multifunctional resin into acrylate vitrimers are inappropriate for photo-3D printing due to the low curing speed of photopolymerization induced by weakening light transmittance or reduction of dimensional accuracy caused by large shrinkage. At present, we demonstrate a new strategy for developing a kind of mechanically robust and reprocessable 3D printing thermosets by combining hydrogen bonds and exchangeable β-hydroxyl esters into acrylate vitrimers. To realize this purpose, diacrylate prepolymer containing β-hydroxyl esters was first synthesized from glycidyl methacrylate and suberic acid. Then, the resin formulations for 3D printing comprising the synthesized diacrylate prepolymer together with acrylamide generate exchanged β-hydroxyl ester and pendent amide in cross-linked networks. Here, hydrogen bonds resulting from the amide group as sacrificial bonds dissipate vast mechanical energy under an external load. With the inclusion of 20 wt % acrylamide, the average tensile strength and Young's modulus are up to 40.1 and 871 MPa, which increased by about 4.4 and 3.85 times, respectively. The network rearrangement of cross-linked vitrimers can be achieved through the dynamic ester exchange reactions with gradual disappearance of hydrogen bonds at elevated temperatures, imparting reprocessability into the printed structures. Various photo-3D printing or UV irradiation shapes were successfully produced, and these dissolved in ethylene glycol could be remolded again.

摘要

可再加工的丙烯酸酯类热固性弹性体需要提高其强度,以扩大其在光三维(光3D)打印中的应用。然而,通过向丙烯酸酯类热固性弹性体中添加纳米填料或多功能树脂来改善机械性能的方法并不适用于光3D打印,因为光聚合固化速度低是由透光率减弱引起的,或者由于大收缩导致尺寸精度降低。目前,我们展示了一种新策略,通过将氢键和可交换的β-羟基酯结合到丙烯酸酯类热固性弹性体中,来开发一种机械性能强大且可再加工的3D打印热固性材料。为实现这一目的,首先由甲基丙烯酸缩水甘油酯和辛二酸合成了含β-羟基酯的二丙烯酸酯预聚物。然后,用于3D打印的树脂配方包含合成的二丙烯酸酯预聚物与丙烯酰胺,在交联网络中生成可交换的β-羟基酯和侧链酰胺。在此,由酰胺基团产生的氢键作为牺牲键,在外部负载下耗散大量机械能。加入20 wt%的丙烯酰胺后,平均拉伸强度和杨氏模量分别高达40.1和871 MPa,分别提高了约4.4倍和3.85倍。交联热固性弹性体的网络重排可通过动态酯交换反应实现,在升高的温度下氢键逐渐消失,赋予打印结构可再加工性。成功制备了各种光3D打印或紫外线照射形状,并且这些溶解在乙二醇中的材料可以再次重塑。

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