van Hurne Simon, Kisters Marijn, Smulders Maarten M J
Laboratory of Organic Chemistry, Wageningen University, Wageningen, Netherlands.
Front Chem. 2023 Feb 23;11:1148629. doi: 10.3389/fchem.2023.1148629. eCollection 2023.
Boronic esters prepared by condensation of boronic acids and diols have been widely used as dynamic covalent bonds in the synthesis of both discrete assemblies and polymer networks. In this study we investigate the potential of a new dynamic-covalent motif, derived from TetraAzaADamantanes (TAADs), with their adamantane-like triol structure, in boronic ester-based covalent adaptable networks (CANs). The TetraAzaADamantane-boronic ester linkage has recently been reported as a more hydrolytically stable boronic ester variant, while still having a dynamic pH response: small-molecule studies found little exchange at neutral pH, while fast exchange occurred at pH 3.8. In this work, bi- and trifunctional TetraAzaADamantane linkers were synthesised and crosslinked with boronic acids to form rubber-like materials, with a Young's modulus of 1.75 MPa. The dynamic nature of the TetraAzaADamantane networks was confirmed by stress relaxation experiments, revealing Arrhenius-like behaviour, with a corresponding activation energy of 142 ± 10 kJ/mol. Increasing the crosslinking density of the material from 10% to 33% resulted in reduced relaxation times, as is consistent with a higher degree of crosslinking within the dynamic networks. In contrast to the reported accelerating effect of acid addition to small-molecule TetraAzaADamantane complexes, within the polymer network the addition of acid increased relaxation times, suggesting unanticipated interactions between the acid and the polymer that cannot occur in the corresponding small-molecules analogues. The obtained boronate-TetraAzaADamantane materials were thermally stable up to 150°C. This thermal stability, in combination with the intrinsically dynamic bonds inside the polymer network, allowed these materials to be reprocessed and healed after damage by hot-pressing.
通过硼酸与二醇缩合制备的硼酸酯已被广泛用作离散组装体和聚合物网络合成中的动态共价键。在本研究中,我们研究了一种源自四氮杂金刚烷(TAADs)的新型动态共价基序在硼酸酯基共价适应性网络(CANs)中的潜力,该基序具有类金刚烷三醇结构。最近有报道称,四氮杂金刚烷 - 硼酸酯键是一种水解稳定性更高的硼酸酯变体,同时仍具有动态pH响应:小分子研究发现,在中性pH下几乎没有交换,而在pH 3.8时发生快速交换。在这项工作中,合成了双功能和三功能的四氮杂金刚烷连接体,并与硼酸交联以形成橡胶状材料,其杨氏模量为1.75MPa。通过应力松弛实验证实了四氮杂金刚烷网络的动态性质,揭示了类似阿累尼乌斯的行为,相应的活化能为142±10kJ/mol。将材料的交联密度从10%提高到33%导致松弛时间缩短,这与动态网络中更高程度的交联一致。与报道的向小分子四氮杂金刚烷配合物中添加酸的加速作用相反,在聚合物网络中添加酸会增加松弛时间,这表明酸与聚合物之间存在意想不到的相互作用,而这种相互作用在相应的小分子类似物中不会发生。所获得的硼酸酯 - 四氮杂金刚烷材料在高达150°C的温度下具有热稳定性。这种热稳定性与聚合物网络内部固有的动态键相结合,使得这些材料在热压损伤后能够重新加工和愈合。