School of Life Science and Technology, Tokyo Institute of Technology, 4259 Nagatsuta, Yokohama 226-8503, Japan.
NMR Science and Development Division, SPring-8 Center, RIKEN, 1-7-22 Suehiro-cho, Tsurumi-ku, Yokohama, Kanagawa 230-0045, Japan.
Biomacromolecules. 2022 Nov 14;23(11):4481-4492. doi: 10.1021/acs.biomac.2c00141. Epub 2022 Oct 24.
Despite intensive research efforts over the past 3 decades, the structural analysis of sulfur-vulcanized natural rubber (NR) remains challenging owing to the complexity and low population of its sulfur moieties. Herein, solid vulcanized NR samples and NR samples reacted with sulfur and other reactants in an organic solvent were analyzed by solid-state NMR with fast magic-angle spinning and solution NMR, respectively. The present high-field two-dimensional NMR analysis revealed six novel sulfur moieties in these samples, including cyclic sulfides, cyclic di/polysulfides, and crosslinked structures with a vinylidene group. While previous studies reported a variety of sulfur-crosslinked structures in NR, our analysis identified only two dominant types of crosslinked structures that matched those reported previously. Our NMR assignments for the crosslinked structures were inconsistent to a large extent with those presented in the previous studies; thus, in the current work, the crosslinked structures were reassigned using the new data. Based on quantitative NMR analysis, this study also provides the first tangible evidence that cyclic rather than crosslinked sulfides can be the dominant sulfur moieties in vulcanized NR. These results may drastically alter the previously established structural landscape of sulfur-vulcanized NR.
尽管在过去的 30 年中进行了密集的研究,但由于其硫部分的复杂性和低丰度,对硫磺硫化天然橡胶(NR)的结构分析仍然具有挑战性。在此,通过快速角旋转固态 NMR 和溶液 NMR 分别对固态硫化 NR 样品和在有机溶剂中与硫和其他反应物反应的 NR 样品进行了分析。目前的高场二维 NMR 分析揭示了这些样品中的六个新的硫基,包括环硫基、环二/多硫基和具有亚乙烯基的交联结构。虽然以前的研究报告了 NR 中的各种硫交联结构,但我们的分析仅鉴定了两种与以前报道的交联结构相匹配的主要类型。我们对交联结构的 NMR 分配在很大程度上与以前研究中提出的分配不一致;因此,在当前工作中,使用新数据重新分配了交联结构。基于定量 NMR 分析,本研究还首次提供了确凿的证据,表明环状而非交联的硫化物可能是硫化 NR 中主要的硫基。这些结果可能会彻底改变以前建立的硫磺硫化 NR 的结构景观。