Fernández Zulema, Fernández Berta, Quiñoá Emilio, Freire Félix
Centro Singular de Investigación en Química Biolóxica e Materiais Moleculares (CiQUS) and Departamento de Química Orgánica, Universidade de Santiago de Compostela, 15782, Santiago de Compostela, Spain.
Departamento de Química Física, Universidade de Santiago de Compostela, 15782, Santiago, de Compostela, Spain.
Angew Chem Int Ed Engl. 2021 Apr 26;60(18):9919-9924. doi: 10.1002/anie.202100162. Epub 2021 Mar 18.
A complex aggregation pathway towards two diastereomeric P and M supramolecular helices arises from the aggregation of a short, chiral, and rigid oligo(phenyleneethynylene) [OPE, (S)-1]. Thus, while Agg aggregate is obtained when a DCM solution of (S)-1 is diluted with MCH at room temperature, Agg aggregate is generated only after a slow heating (353 K)/cooling (273 K) process. Interestingly, during Agg formation (mechanism 1), short P chain oligomers are produced, which have a great tendency to aggregate in plane, yielding brick-like nanostructures that halt the aggregation process. On the other hand, after a heating/cooling cycle, long M type columnar helical aggregates (Agg ) are obtained, formed by individual supramolecular polymer chains (mechanism 2) easily visualized by AFM. The two different P/M orientations obtained for Agg and Agg reveal the dynamic character of the system and its ability to create diastereomeric helical structures under the right conditions. Different experimental protocols were explored to prepare long M type columnar helical aggregates, which are not obtained by using the previous MCH/DCM 99/1 (v/v) solvent mixture. The generation of the desired M oriented supramolecular polymer is achieved when toluene is added to the solvent mixture in a 97/2/1 MCH/Tol/DCM (v/v/v) ratio.
一条通向两种非对映体P型和M型超分子螺旋的复杂聚集途径源于一种短的、手性的刚性亚苯基乙炔低聚物[OPE,(S)-1]的聚集。因此,当在室温下用MCH稀释(S)-1的DCM溶液时可得到Agg聚集体,而只有经过缓慢加热(353 K)/冷却(273 K)过程后才会生成Agg聚集体。有趣的是,在Agg形成过程中(机制1),会产生短的P链低聚物,它们很容易在平面内聚集,形成砖状纳米结构,从而终止聚集过程。另一方面,经过加热/冷却循环后,可得到由单个超分子聚合物链形成的长M型柱状螺旋聚集体(Agg )(机制2),通过原子力显微镜很容易观察到。Agg 和Agg 所获得的两种不同的P/M取向揭示了该体系的动态特性及其在合适条件下形成非对映体螺旋结构的能力。人们探索了不同的实验方案来制备长M型柱状螺旋聚集体,使用之前的MCH/DCM 99/1(v/v)溶剂混合物无法得到这种聚集体。当以97/2/1的MCH/甲苯/DCM(v/v/v)比例向溶剂混合物中加入甲苯时,可生成所需的M取向超分子聚合物。