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Cross-linked ultrathin polyurea films via molecular layer deposition

机译:通过分子层沉积交联的超薄聚脲薄膜

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摘要

Ultrathin cross-linked polymer thin films are highly desirable materials because of their important roles in many applications. However, they are difficult and challenging to fabricate. Here we report a one-step process for depositing cross-linked polyurea thin films using a vapor-phase molecular layer deposition (MLD) technique. 1,4-Diisocyanatobutane and a series of different multiamines, including diethylenetriamine, triethylenetetramine, and tris(2-aminoethyl)amine, were used to grow polyurea MLD films via urea-coupling reactions. The deposited cross-linked polyurea films exhibit characteristic MLD film growth behaviors, such as constant growth rates, infrared absorption by expected urea modes, and stoichiometric chemical compositions. More importantly, the cross-linking is shown to be capable of improving the film properties. Based on cross-linking, the thin film density can be increased by approximately 50%. In addition, the film decomposition temperature is increased by about 30 °C, suggesting an enhanced thermal stability of the cross-linked ultrathin polyurea films.
机译:超薄交联的聚合物薄膜是非常理想的材料,因为它们在许多应用中起着重要的作用。但是,它们很难制造且具有挑战性。在这里,我们报告使用气相分子层沉积(MLD)技术沉积交联聚脲薄膜的一步法。 1,4-二异氰酸根合丁烷和一系列不同的多胺,包括二亚乙基三胺,三亚乙基四胺和三(2-氨基乙基)胺,用于通过脲偶联反应生长聚脲MLD膜。沉积的交联聚脲膜表现出特征性的MLD膜生长行为,例如恒定的生长速度,预期的尿素模式对红外的吸收以及化学计量的化学组成。更重要的是,显示出交联能够改善膜性能。基于交联,薄膜密度可以增加大约50%。另外,膜的分解温度提高了约30℃,这表明交联的超薄聚脲膜的热稳定性增强。

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