Institute of Macromolecular Chemistry AS CR, 162 06 Prague, Czech Republic.
J Phys Chem B. 2010 Mar 11;114(9):3140-51. doi: 10.1021/jp911205q.
Using (1)H and (13)C 1D and 2D NMR spectra, pulsed field-gradient (PFG) diffusion measurements, and (13)C relaxations supported by density functional theory (DFT) calculations, the temperature-dependent behavior of (EO)(m)(PO)(n)(EO)(m) block copolymers (m/n = 31/14, 31/72, and 17/1) in D(2)O below and at the critical micellar temperature (CMT) was investigated in order to understand the nature of primary self-association acts and their true driving force. It was shown that a conformation change of the PO block followed by mild and reversible association with other PO blocks and eventually with the inner parts of EO blocks starts at temperatures 10-12 K below the CMT. The primary process is the entropy-driven disintegration of the PPO hydration envelope based on cooperation of hydrophobic hydration and hydrogen bonding. The partial dehydration of PPO is followed by its conformation change. Both processes are cooperative and reversible with a correlation time of the order 0.01 s and an activation energy of 51.3 kJ/mol. The PPO chain in a staggered conformation is prone to self-association starting at temperatures 5-6 K below CMT. In (EO)(m)(PO)(n)(EO)(m) block copolymers, this process is complicated by the stripping of PEO chains of a part of hydrogen-bound water and entwining them with PPO. It is shown that only inner (PPO-near) parts of PEO take part in the process, the end-groups remaining free.
利用 1H 和 13C 1D 和 2D NMR 谱、脉冲梯度场(PFG)扩散测量以及基于密度泛函理论(DFT)计算的 13C 弛豫,研究了 EO(m)(PO)(n)EO(m)嵌段共聚物(m/n=31/14、31/72 和 17/1)在 D2O 中低于和高于临界胶束温度(CMT)时的温度依赖性行为,以了解初级自组装行为的本质及其真正驱动力。结果表明,PO 链构象变化,随后与其他 PO 链温和可逆地缔合,最终与 EO 链的内部缔合,起始温度低于 CMT 10-12 K。该过程是基于疏水水合和氢键合合作的 PPO 水合外壳的熵驱动解组装。随后发生 PPO 的构象变化,这两个过程都是协同和可逆的,相关时间约为 0.01 s,活化能为 51.3 kJ/mol。在 CMT 以下 5-6 K 的温度下,交错构象的 PPO 链易于自组装。在 EO(m)(PO)(n)EO(m)嵌段共聚物中,这个过程由于 PEO 链部分去水合并与 PPO 缠绕而变得复杂。结果表明,只有内(靠近 PPO)部分的 PEO 参与该过程,而端基保持自由。