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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Establishing the Ellipsoidal Geometry of a Benzoic Acid-Based Amphiphile via Dimer Switching: Insights from Intramolecular Rotation and Facial H-Bond Torsion
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Establishing the Ellipsoidal Geometry of a Benzoic Acid-Based Amphiphile via Dimer Switching: Insights from Intramolecular Rotation and Facial H-Bond Torsion

机译:通过二聚体转换建立基于苯甲酸的两亲物的椭球几何:分子内旋转和面部氢键扭转的见解

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Soft molecular ellipsoids conceived from 3,4-di(dodecyIoxy)benzoic acid (DDBA) amphiphile draw attention to monomer structure design, intramolecular -COOH headgroup twist (φ°) and cyclic-acyclic dimer switching through facial H-bond torsion (Ψ°). Generically, precipitation in hydrogen bonded systems has been the prime phenomenon once the critical aggregation concentrations were reached in the bulk solution. DDBA was no exception to this generalization. It formed precipitates in chloroform and methanol with no specific geometry but with cyclic dimer motifs in them. On the contrary, surface pressure modulated interfacial aggregation with ellipsoidal geometry followed acyclic dimerization (catemer motif) with various levels of headgroup torsion, established through real-time polarization modulated infrared reflection-absorption spectroscopy (IRRAS) and density functional theory (DFT) calculations, that estimated the energy costs for these unexplored pathways. The reaction coordinates Ψ° and φ° in consonance with 2D surface pressure modulation thus directed the shape anisotropy during the dynamic self-assembly of DDBA. Changes in subphase pH and metal ionic environment had a derogatory effect on the ellipsoid formation, the structural requirement for which strictly followed a stringent need for twin alkyl chains in an asymmetric unit cell, as 4-dodecyloxybenzoic acid (MABA) with a single alkyl chain formed exclusively spherical assemblies with no dimer modulation. The investigation thus reports unexplored energy pathways toward ellipsoidal geometry of the amphiphile in the course of its interfacial aggregation.
机译:由3,4-二(十二烷氧基)苯甲酸(DDBA)两亲物构想的软分子椭球体引起人们对单体结构设计,分子内-COOH头基扭曲(φ°)和通过环面H键扭转(Ψ°)的环状无环二聚体转换的关注)。通常,一旦在整体溶液中达到临界聚集浓度,氢键体系中的沉淀便成为主要现象。 DDBA也不例外。它在氯仿和甲醇中形成沉淀物,没有特定的几何形状,但其中具有环状二聚体图案。相反,通过实时偏振调制红外反射吸收光谱法(IRRAS)和密度泛函理论(DFT)计算建立的,具有椭圆形几何形状的表面压力调制界面聚集体随后具有各种水平的头基扭转的无环二聚化(类别基序),估算了这些未开发途径的能源成本。反应坐标Ψ°和φ°与2D表面压力调制一致,因此在DDBA的动态自组装过程中指示了形状各向异性。亚相pH值和金属离子环境的变化对椭球的形成有不利的影响,其结构要求严格遵循在不对称晶胞中对双烷基链的严格要求,例如带有单烷基链的4-十二烷氧基苯甲酸(MABA)。形成没有二聚体调制的专有球形组件。因此,这项研究报告了在两性分子界面聚集过程中,两亲分子朝向椭圆形几何结构的未探索的能量途径。

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