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环状聚合物刷表面密度变化揭示拓扑结构对其纳米摩擦学和生物惰性性能的影响。

Surface Density Variation within Cyclic Polymer Brushes Reveals Topology Effects on Their Nanotribological and Biopassive Properties.

作者信息

Divandari Mohammad, Trachsel Lucca, Yan Wenqing, Rosenboom Jan-Georg, Spencer Nicholas D, Zenobi-Wong Marcy, Morgese Giulia, Ramakrishna Shivaprakash N, Benetti Edmondo M

机构信息

Polymer Surfaces Group, Laboratory for Surface Science and Technology, Department of Materials, ETH Zürich, Zürich, Switzerland.

Tissue Engineering and Biofabrication, Department of Health Sciences and Technology, ETH Zürich, Zürich, Switzerland.

出版信息

ACS Macro Lett. 2018 Dec 18;7(12):1455-1460. doi: 10.1021/acsmacrolett.8b00847. Epub 2018 Nov 27.

Abstract

While topology effects by cyclic polymers in solution and melts are well-known, their translation into the interfacial properties of polymer "brushes" provides new opportunities to impart enhanced surface lubricity and biopassivity to inorganic surfaces, above and beyond that expected for linear analogues of identical composition. The impact of polymer topology on the nanotribological and protein-resistance properties of polymer brushes is revealed by studying linear and cyclic poly(2-ethyl-2-oxazoline) (PEOXA) grafts presenting a broad range of surface densities and while shearing them alternatively against an identical brush or a bare inorganic surface. The intramolecular constraints introduced by the cyclization provide a valuable increment in both steric stabilization and load-bearing capacity for cyclic brushes. Moreover, the intrinsic absence of chain ends within cyclic adsorbates hinders interpenetration between opposing brushes, as they are slid over each other, leading to a reduction in the friction coefficient (μ) at higher pressures, a phenomenon not observed for linear grafts. The application of cyclic polymers for the modification of inorganic surfaces generates films that outperform both the nanotribological and biopassive properties of linear brushes, significantly expanding the design possibilities for synthetic biointerfaces.

摘要

虽然溶液和熔体中的环状聚合物的拓扑效应是众所周知的,但将其转化为聚合物“刷”的界面性质,为赋予无机表面增强的表面润滑性和生物惰性提供了新的机会,这超出了相同组成的线性类似物的预期。通过研究具有广泛表面密度的线性和环状聚(2-乙基-2-恶唑啉)(PEOXA)接枝物,并在将它们交替地与相同的刷或裸露的无机表面剪切时,揭示了聚合物拓扑对聚合物刷的纳米摩擦学和抗蛋白质性质的影响。环化引入的分子内约束为环状刷的空间稳定和承载能力提供了有价值的增加。此外,环状吸附物中固有的链端缺失阻碍了相对刷之间的相互渗透,因为它们彼此滑动,导致在较高压力下摩擦系数(μ)降低,这是线性接枝物未观察到的现象。环状聚合物用于无机表面改性产生的薄膜在纳米摩擦学和生物惰性方面均优于线性刷,显著扩展了合成生物界面的设计可能性。

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