Bose Ranjita K, Hohlbein Nico, Garcia Santiago J, Schmidt Annette M, van der Zwaag Sybrand
Novel Aerospace Materials, Faculty of Aerospace Engineering, Delft University of Technology, Kluyverweg 1, Delft 2629HS, The Netherlands.
Phys Chem Chem Phys. 2015 Jan 21;17(3):1697-704. doi: 10.1039/c4cp04015e. Epub 2014 Dec 2.
In this work, we correlate network dynamics, supramolecular reversibility and the macroscopic surface scratch healing behavior for a series of elastomeric ionomers based on an amorphous backbone with varying fractions of carboxylate pendant groups completely neutralized by Na(+), Zn(2+) or Co(2+) as the counter ions. Our results based on temperature dependent dynamic rheology with simultaneous FTIR analysis clearly indicate that the effective supramolecular bond lifetime (τ(b)) is an important parameter to ascertain the ideal range of viscoelasticity for good macroscopic healing. The reversible coordination increased with higher valence metal ions and ionic content. Both rheological and spectroscopic analyses show a decrease in supramolecular assembly with temperature. The temperature dependent τ(b) was used to calculate the activation energy (Ea) of dissociation for the ionic clusters. According to self-healing experiments based on macroscale surface scratching, a supramolecular bond lifetime between 10 and 100 s results in samples with complete surface scratch healing and good mechanical robustness.
在这项工作中,我们关联了一系列基于无定形主链的弹性体离聚物的网络动力学、超分子可逆性和宏观表面划痕愈合行为,这些离聚物具有不同比例的羧酸盐侧基,分别被Na(+)、Zn(2+)或Co(2+)作为抗衡离子完全中和。我们基于温度依赖性动态流变学并同时进行傅里叶变换红外光谱(FTIR)分析的结果清楚地表明,有效的超分子键寿命(τ(b))是确定良好宏观愈合的理想粘弹性范围的一个重要参数。随着高价金属离子和离子含量的增加,可逆配位作用增强。流变学和光谱分析均表明,超分子组装体随温度降低。利用温度依赖性τ(b)来计算离子簇解离的活化能(Ea)。根据基于宏观表面划痕的自愈实验,超分子键寿命在10到100秒之间会使样品实现完全的表面划痕愈合并具有良好的机械稳健性。