Department of Chemistry , National Taiwan University , Taipei 10617 , Taiwan.
Anal Chem. 2018 Jun 19;90(12):7691-7699. doi: 10.1021/acs.analchem.8b01576. Epub 2018 Jun 4.
Supramolecular diblock copolymers using metal-ligand coordination can be synthesized under ambient conditions by delicate design of the end groups of the homopolymer chains. However, mass spectrometric analysis of such metallo-supramolecular copolymers is challenging. One of the reasons is the nonpolarity of the polymer chains, making it hard to disperse the complexes in electrospray ionization (ESI)-friendly environments. The other difficulty is the noncovalent nature of such copolymers, which is easily disrupted during the ionization. Here, we demonstrate that the intact metallo-supramolecular diblock copolymers can be maintained sufficiently during the ESI process in aqueous solution within micelles. The high-resolution mass spectrometric evidence revealed that the surfactant molecules effectively protect the noncovalent binding of the complexes into gaseous ions. Intriguingly, surfactant molecules were sufficiently detached away from the copolymer complexes, giving unambiguous mass spectra that were predominated by intact diblock copolymers. This ESI-based approach allowed us to investigate the relative bond strengths of metal-to-ligand complexation using collision-induced dissociation (CID) in the ion trap mass spectrometry. Conformational features and collision cross sections of the copolymers were thus obtained using subsequent ion mobility spectrometry mass spectrometry (IMS-MS). Remarkable environment-dependent conformations of the denoted diblock copolymers were found using this mass spectrometric platform.
利用金属-配体配位作用,可以在温和条件下通过对均聚物链端基的精心设计来合成超分子两嵌段共聚物。然而,对这种金属超分子共聚物进行质谱分析具有挑战性。原因之一是聚合物链的非极性,使得它们很难在电喷雾电离(ESI)友好的环境中分散。另一个困难是这种共聚物的非共价性质,在电离过程中很容易被破坏。在这里,我们证明了在胶束内的水溶液中,完整的金属超分子两嵌段共聚物可以在 ESI 过程中得到充分的维持。高分辨率质谱证据表明,表面活性剂分子有效地保护了复合物的非共价结合,使其转化为气态离子。有趣的是,表面活性剂分子从共聚物复合物上足够地脱离下来,给出了明确的质谱,主要由完整的两嵌段共聚物组成。这种基于 ESI 的方法允许我们使用离子阱质谱中的碰撞诱导解离(CID)来研究金属-配体络合的相对键强度。随后使用离子淌度质谱(IMS-MS)获得了共聚物的构象特征和碰撞截面。使用这个质谱平台发现了指定的两嵌段共聚物显著的环境依赖构象。