Technical University of Darmstadt, Clemens-Schöpf-Institute for Organic Chemistry and Biochemistry, Alarich-Weiss-Straße 4, 64287 Darmstadt, Germany.
Ruhr University Bochum, Faculty of Chemistry and Biochemistry, Organic Chemistry II, Universitätsstraße 150, 44801 Bochum, Germany.
Soft Matter. 2021 Mar 18;17(10):2849-2856. doi: 10.1039/d0sm02102d.
Circular dichroism (CD) spectroscopy is commonly used for investigation of the secondary structure of biomolecular compounds as well as polymers in isotropic solution. In anisotropic solution, the usage of the apparent CD is prone to misinterpretations due to artefacts from contributions of e.g. linear dichroism (LD). Herein, a method for the complete cancelation of anisotropic artefacts in the apparent CD is developed and its validity proven. The approach is further used for investigation of the conformation and the lyotropic liquid crystalline (LLC) structure of a copolyaspartate. For this system, a temperature-dependent change of the polymer's helical conformation (helix reversal) is known. Furthermore, a rotation of the aligned polymer helices inside a magnetic field (helix realignment) is independently present, occurring at a lower temperature compared to the helix reversal. In the current study, the helix reversal is confirmed and found to be accompanied by a change of the LLC structure. A cholesteric structure is detected and revealed to change its sense (cholesteric reversal) at the temperature at which the helix realigns in the magnetic field. The determination of the cholesteric sense is enabled by measuring the induced CD of an achiral dye, dissolved in the anisotropic polymer solution. Investigation of the anisotropic polymer solution is, thus, only made possible by cancellation of the aforementioned anisotropic artefacts. This allows the observation of changes of the liquid crystal structure from right-handed cholesteric, through left-handed cholesteric, to nematic with increasing temperature.
圆二色性(CD)光谱通常用于研究生物分子化合物以及各向同性溶液中聚合物的二级结构。在各向异性溶液中,由于线性二色性(LD)等贡献产生的假象,表观 CD 的使用容易产生误解。在此,开发了一种完全消除表观 CD 中各向异性假象的方法,并证明了其有效性。该方法进一步用于研究共天冬氨酸的构象和溶致液晶(LLC)结构。对于该系统,已知聚合物螺旋构象(螺旋反转)随温度变化。此外,还存在一个独立的现象,即在磁场中对齐的聚合物螺旋的旋转(螺旋重新排列),其发生温度低于螺旋反转温度。在本研究中,确认了螺旋反转,并发现其伴随着 LLC 结构的变化。检测到胆甾相结构,并发现其在螺旋在磁场中重新排列的温度下改变其手性(胆甾相反转)。通过测量溶解在各向异性聚合物溶液中的手性染料的诱导 CD,可以确定胆甾相的手性。因此,只有通过消除上述各向异性假象,才能对各向异性聚合物溶液进行研究。这使得可以观察到液晶结构从右手性胆甾相,通过左手性胆甾相,随着温度升高到向列相的变化。