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Experiments and Simulations of Complex Sugar-Based Coil-Brush Block Polymer Nanoassemblies in Aqueous Solution

机译:水溶液中复合糖基卷材刷块聚合物纳米结合的实验与仿真

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In this work, we investigated the fundamental molecular parameters that guide the supramolecular assembly of glucose-based amphiphilic coil-brush block polymers in aqueous solution and elucidated architecture morphology relationships through experimental and simulation tools. Well-defined coil-brush polymers were synthesized through ring-opening polymerizations (ROP) of glucose carbonates to afford norbornenyl-functionalized poly(glucose carbonate) (NB-PGC) macromonomers, followed by sequential ring-opening metathesis polymerizations (ROMP) of norbornene N-hydroxysuccinimidyl (NHS) esters and the NB-PGC macromonomers. Variation of the macromonomer length and grafting through ROMP conditions allowed for a series of coil-brush polymers to be synthesized with differences in the brush and coil dimensions, independently, where the side chain graft length and brush backbone were used to tune the brush, and the coil-block length was used to vary the coil. Hydrolysis of the NHS moieties gave the amphiphilic coil-brush polymers, where the hydrophilic hydrophobic ratios were dependent on the brush and coil relative dimensions. Experimental assembly in solution was studied and found to yield a variety of structurally dependent nanostructures. Simulations were conducted on the solution assembly of coil-brush polymers, where the polymers were represented by a coarse-grained model and the solvent was represented implicitly. There is qualitative agreement in the phase diagrams obtained from simulations and experiments, in terms of the morphologies of the assembled nanoscopic structures achieved as a function of coil-brush design parameters (e.g., brush and coil lengths, composition). The simulations further showed the chain conformations adopted by the coil-brush polymers and the packing within these assembled nanoscopic structures. This work enables the predictive design of nanostructures from this glucose-based coil-brush polymer platform while providing a fundamental understand
机译:在这项工作中,我们研究了通过实验和仿真工具引导葡萄糖基两亲线圈刷区块聚合物的基本分子参数,并通过实验和仿真工具阐明了建筑形态关系。通过葡萄糖碳酸盐的开环聚合(ROP)合成明确定义的线圈刷聚合物,得到降冰片烯基官能化的聚(NB-PGC)大分子单体,然后是降冰片烯的连续开环复分解聚合(ROBOL) N-羟基琥珀酰亚胺基(NHS)酯和Nb-PGC大分子单体。通过ROMP条件的大分子单体长度和嫁接的变化,允许一系列卷轴刷聚合物,独立地使用刷子和线圈尺寸的差异合成,其中侧链移植物长度和刷子骨架调整刷子,以及线圈块长度用于改变线圈。 NHS部分的水解给了两亲螺旋刷子聚合物,其中亲水性疏水比取决于刷子和线圈相对尺寸。研究了溶液中的实验组件,发现并发现产生各种结构依赖性纳米结构。在卷材刷聚合物的溶液组件上进行模拟,其中聚合物由粗粒模型表示,溶剂含有含蓄地表示。在模拟和实验中获得的相图中存在定性协议,就作为线圈刷设计参数的函数(例如,刷子和线圈长度,组成)而实现的组装纳米镜结构的形态。该模拟进一步展示了线圈刷聚合物采用的链构象和这些组装纳米镜结构内的填料。这项工作使得能够从该基于葡萄糖的线圈刷高分子平台预测设计纳米结构,同时提供基本理解

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