Adachi Naoya, Sugiyama Hiroki, Arai Masafumi, Ogawa Hideo
Division of Liberal Arts, School of Science and Engineering, Tokyo Denki University, Hatoyama, Hiki-gun, Saitama 350-0394, Japan.
Division of Science, School of Science and Engineering, Tokyo Denki University, Hatoyama, Hiki-gun, Saitama 350-0394, Japan.
Molecules. 2014 Apr 2;19(4):4135-44. doi: 10.3390/molecules19044135.
G1 and G2 fluorene dendrimers with naphthalene termini were synthesized as a fluorescence turn-on type chemical sensor for vitamin K4. The fluorene dendrimers were prepared by Williamson ether reaction between the fluorene core with dihydroxy groups and dendritic naphthalene segments with methylene chloride by a convergent method. We investigated the relationship between the dendrimer generation and vitamin K4 recognition of fluorene dendrimer with naphthalene termini in CHCl3. Addition of vitamin K4 enhanced the fluorescence intensity of the fluorene dendrimer. Especially, the G2 fluorene dendrimer was found to be an effective chemical sensor for vitamin K4 and better than the G1 fluorene dendrimer.
合成了带有萘端基的G1和G2芴树枝状大分子,作为维生素K4的荧光开启型化学传感器。芴树枝状大分子是通过二羟基芴核与带有二氯甲烷的树枝状萘片段之间的威廉姆森醚反应,采用收敛法制备的。我们研究了树枝状大分子代数与带有萘端基的芴树枝状大分子在氯仿中对维生素K4识别之间的关系。加入维生素K4增强了芴树枝状大分子的荧光强度。特别是,发现G2芴树枝状大分子是一种有效的维生素K4化学传感器,比G1芴树枝状大分子更好。