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Enhanced adhesion in two-photon polymerization direct laser writing

机译:增强双光子聚合直接激光书写中的粘附性

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摘要

We have quantified the adhesion forces between two-photon polymerization direct laser writing (TPP-DLW) microstructures and glass surfaces with and without an adhesion promoter. Glass surfaces treated with an acryloxy-silane agent produce adhesion forces that are almost three times larger than the forces observed with pristine glass surfaces. Determination of the substrates’ surface free energies suggests that the observed adhesion enhancement is chemical in its nature, implying that covalent bonds are formed between the polymer and the glass by means of the silane agent. The importance of this finding is demonstrated in the successful production of glassy carbon microstructures using TPP-DLW, followed by pyrolysis.
机译:我们已经量化了双光子聚合直接激光书写(TPP-DLW)微结构和玻璃表面之间的粘附力和没有粘附促进剂。用丙烯酰氧基 - 硅烷化处理的玻璃表面产生粘合力,几乎比用原始玻璃表面观察到的力大的三倍。基材的表面无能量的测定表明,观察到的粘合增强是其性质的化学品,这意味着通过硅烷试剂在聚合物和玻璃之间形成共价键。使用TPP-DLW成功生产玻璃状碳微观结构的玻纤维碳微观结构的重要性,然后进行热解。

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