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多层3D打印的基于二肽的低分子量凝胶。

Multi-layer 3D printed dipeptide-based low molecular weight gels.

作者信息

Hill Max J S, Adams Dave J

机构信息

School of Chemistry, University of Glasgow, Glasgow, G12 8QQ, UK.

出版信息

Soft Matter. 2022 Aug 17;18(32):5960-5965. doi: 10.1039/d2sm00663d.

Abstract

We describe the direct 3D printing of dipeptide hydrogels, forming layers from gels prepared from different dipeptides. The dipeptides self-assemble into fibres that lead to very different microstructures letting us differentiate between the gels. We show how the mechanical properties of the overall 3D printed structures are affected by the composition of each of the layers, allowing us to build up structures with different microstructure and stiffness. We also discuss the interface between layers formed from different gelators, showing that the gels remain independent from neighbouring printed material, even when prepared in very close proximity.

摘要

我们描述了二肽水凝胶的直接3D打印过程,即由不同二肽制备的凝胶形成各层。二肽自组装成纤维,从而导致形成截然不同的微观结构,使我们能够区分这些凝胶。我们展示了整体3D打印结构的机械性能是如何受到各层组成的影响,这使我们能够构建具有不同微观结构和刚度的结构。我们还讨论了由不同凝胶剂形成的各层之间的界面,结果表明,即使在非常接近的距离制备,这些凝胶仍与相邻的打印材料保持独立。

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