Latter Melissa J, Langford Steven J
Centre for Strategic Nano-fabrication, The University of Western Australia, Crawley, Australia.
Int J Mol Sci. 2010 Apr 26;11(4):1878-87. doi: 10.3390/ijms11041878.
The structural, coordinative, photochemical and electrochemical properties of the porphyrin macrocycle that make them the functional element of choice in ubiquitous biological systems, e.g., chlorophyll, cytochrome P450 and hemoglobin, also contribute to making porphyrins and metalloporphyrins desirable in a "bottom-up" approach to the construction of nanosized devices. This paper highlights some recent advances in the construction of supramolecular assemblies based on the porphyrin macrocycle that display optically readable functions as a result of photonic or chemical stimuli.
卟啉大环的结构、配位、光化学和电化学性质使其成为普遍存在的生物系统(如叶绿素、细胞色素P450和血红蛋白)中功能元素的首选,这也促使卟啉和金属卟啉在“自下而上”构建纳米器件的方法中备受青睐。本文重点介绍了基于卟啉大环构建超分子组装体的一些最新进展,这些组装体由于光子或化学刺激而具有光学可读功能。