Hussain Rohanah, Jávorfi Tamás, Siligardi Giuliano
Diamond Light Source Ltd., Harwell Science and Innovation Campus, Didcot, United Kingdom.
Front Chem. 2021 Apr 8;9:616928. doi: 10.3389/fchem.2021.616928. eCollection 2021.
Circular Dichroism imaging in the 190-650 nm spectral region pionered at Diamond Light Source B23 beamline, has been made possible by the highly collimated microbeam generated at the beamline and has been used to study the homogeneity of the supramolecular structures of thin films of chiral materials deposited on fused quartz substrates. This facility has been expanded with the installation of a Mueller Matrix Polarimeter, MMP, coupled to the beamlight, of which a preliminary data will be discussed. In the solid state, the measurement of CD related to the supramolecular structure is hampered by the presence of circular birefringence, linear dichroism, and linear birefringence that can only be evaluated using the MMP technique. The ability to characterize the chiroptical property of thin chiral films prepared under a variety of conditions and protocols such as drop cast, spin coating, spray at different temperatures and concentrations will enable the determination of the critical parameters for reproducible, uniform and homogeneous specimen preparation, which is the for any commercial application. This is of particular importance for optoelectronic materials, but it can also be extended to a broad variety of materials with applications from biosensors to biological tissues.
在钻石光源B23光束线开创的190 - 650纳米光谱区域的圆二色性成像,得益于该光束线产生的高度准直微束得以实现,并已用于研究沉积在熔融石英衬底上的手性材料薄膜超分子结构的均匀性。随着与光束耦合的穆勒矩阵偏振仪(MMP)的安装,这一设施得到了扩展,本文将讨论其初步数据。在固态中,与超分子结构相关的圆二色性测量受到圆双折射、线性二色性和线性双折射的影响,而这些只能使用MMP技术进行评估。能够表征在各种条件和方案(如滴铸、旋涂、在不同温度和浓度下喷雾)下制备的手性薄膜的旋光性质,将有助于确定可重复、均匀和同质样品制备的关键参数,这对于任何商业应用都是至关重要的。这对于光电子材料尤为重要,但也可以扩展到从生物传感器到生物组织等广泛应用的各种材料。