Zou Dan-Hong, Wang Peng, Luo Wen, Hou Jin-Le, Zhu Qin-Yu, Dai Jie
College of Chemistry, Chemical Engineering and Materials Science, Soochow University , Suzhou 215123, People's Republic of China.
Inorg Chem. 2018 Feb 5;57(3):1623-1629. doi: 10.1021/acs.inorgchem.7b02985. Epub 2018 Jan 22.
Organic gelators and metal-coordination frameworks based on perylene derivatives as functional materials have attracted great attention because of their intense fluorescence emission as well as unique electronic and photonic properties. We report here the structures and properties of a luminescent titanium(IV) coordination compound of a perylene tetracarboxylate (PTC) derivative, [Ti(OPr)(L)(phen)] (1), along with its two naphthalene analogues, [Ti(OPr)(L)(phen)] (2) and [Ti(OPr)(L)(bpy)] (3), where L = 3,9-dicarboxylate-(4,10-diisopropanolcarboxylate)perylene, phen = 1,10-phenanthroline, L = 1,5-dicarboxylate-(2,6-diisopropanolcarboxylate)naphthalene, and bpy = 2,2'-bipyridine. Compound 1 is a rare early-transition-metal PTC coordination compound that can be simply prepared in one pot as crystals by a low-heat synthesis. Unlike those of paramagnetic late-transition-metal PTC compounds, compound 1 showed intense fluorescence emission. More remarkably, the crystals of 1 can be turned immediately to a fluorescent hydrogel just through a simple procedure, putting the crystals in water and then treating with ultrasound. No acid catalyst or pH adjustment is needed. Hydrolysis of the titanium isopropanol group in water and π-π interaction of the perylene and phen play important roles in the gelation process. The film prepared from the gel can be used as a visual fluorescence sensor for aromatic amines and phenols, which are hazards for the human and environment.
基于苝衍生物的有机凝胶剂和金属配位框架作为功能材料,因其强烈的荧光发射以及独特的电子和光子性质而备受关注。我们在此报告一种苝四羧酸盐(PTC)衍生物的发光钛(IV)配位化合物[Ti(OPr)(L)(phen)](1)及其两种萘类似物[Ti(OPr)(L)(phen)](2)和[Ti(OPr)(L)(bpy)](3)的结构和性质,其中L = 3,9 - 二羧酸盐 - (4,10 - 二异丙醇羧酸盐)苝,phen = 1,10 - 菲咯啉,L = 1,5 - 二羧酸盐 - (2,6 - 二异丙醇羧酸盐)萘,bpy = 2,2' - 联吡啶。化合物1是一种罕见的早期过渡金属PTC配位化合物,可通过低热合成简单地一锅法制备成晶体。与顺磁性晚期过渡金属PTC化合物不同,化合物1表现出强烈的荧光发射。更值得注意的是,只需通过一个简单的步骤,将晶体放入水中然后用超声处理,1的晶体就能立即转变为荧光水凝胶。无需酸催化剂或调节pH值。水中钛异丙醇基团的水解以及苝与菲咯啉的π - π相互作用在凝胶化过程中起重要作用。由该凝胶制备的薄膜可作为用于检测对人类和环境有害的芳香胺和酚类的视觉荧光传感器。