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在各种制造工艺中粘结不同的聚合物网络。

Bonding dissimilar polymer networks in various manufacturing processes.

作者信息

Liu Qihan, Nian Guodong, Yang Canhui, Qu Shaoxing, Suo Zhigang

机构信息

John A. Paulson School of Engineering and Applied Sciences, Kavli Institute for Bionano Science and Technology, Harvard University, Cambridge, MA, 02138, USA.

State Key Laboratory of Fluid Power & Mechatronic System, Key Laboratory of Soft Machines and Smart Devices of Zhejiang Province, and Department of Engineering Mechanics, Zhejiang University, 310027, Hangzhou, China.

出版信息

Nat Commun. 2018 Feb 27;9(1):846. doi: 10.1038/s41467-018-03269-x.

Abstract

Recently developed devices mimic neuromuscular and neurosensory systems by integrating hydrogels and hydrophobic elastomers. While different methods are developed to bond hydrogels with hydrophobic elastomers, it remains a challenge to coat and print various hydrogels and elastomers of arbitrary shapes, in arbitrary sequences, with strong adhesion. Here we report an approach to meet this challenge. We mix silane coupling agents into the precursors of the networks, and tune the kinetics such that, when the networks form, the coupling agents incorporate into the polymer chains, but do not condensate. After a manufacturing step, the coupling agents condensate, add crosslinks inside the networks, and form bonds between the networks. This approach enables independent bonding and manufacturing. We formulate oxygen-tolerant hydrogel resins for spinning, printing, and coating in the open air. We find that thin elastomer coatings enable hydrogels to sustain high temperatures without boiling.

摘要

最近开发的设备通过整合水凝胶和疏水性弹性体来模拟神经肌肉和神经感觉系统。虽然已经开发出不同的方法来将水凝胶与疏水性弹性体结合,但以任意顺序、以强附着力涂覆和打印各种任意形状的水凝胶和弹性体仍然是一个挑战。在此,我们报告一种应对这一挑战的方法。我们将硅烷偶联剂混入网络的前体中,并调节动力学,使得当网络形成时,偶联剂融入聚合物链中,但不会发生缩合。在制造步骤之后,偶联剂发生缩合,在网络内部添加交联,并在网络之间形成键。这种方法能够实现独立的键合和制造。我们配制了用于在空气中纺丝、打印和涂覆的耐氧水凝胶树脂。我们发现薄的弹性体涂层能使水凝胶在不沸腾的情况下承受高温。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a17f/5829243/c20bed90d692/41467_2018_3269_Fig1_HTML.jpg

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