Dai Kun, Xu Baolian, Chen Jingwen
School of Petrochemical Engineering, Changzhou University, Changzhou, 213164, People's Republic of China.
J Fluoresc. 2014 Jul;24(4):1129-36. doi: 10.1007/s10895-014-1393-0. Epub 2014 May 4.
A new rhodamine derivative (RhB-NSal) bearing an electron-withdrawing group -NO2 at the 5-position of 2-hydroxyphenyl moiety was synthesized and its sensing behaviors for Cu(2+) in acetonitrile and aqueous acetate-buffer/acetonitrile (2/3, v/v, pH 4.8) media were investigated. In each medium, significant absorption and fluorescence enhancements accompanied by an instant color change from colorless to pink were observed for RhB-NSal upon addition of Cu(2+). RhB-NSal binds with Cu(2+) forming a 1:1 stoichiometric complex with an association constant of 6.72 (±0.03) × 10(4) M(-1) and 4.23 (±0.03) × 10(4) M(-1), respectively. RhB-NSal displayed high selectivity for Cu(2+) over possibly competitive metal ions except that Fe(3+) and Bi(3+) ion can respectively bring about a little interference in absorption and fluorescence with its sensing for Cu(2+). In dry acetonitrile, pronounced enhancements in the absorbance and emission of RhB-NSal were induced by Cu(2+), with a detection limit of 0.49 μM, exhibiting higher sensitivity than that of a known analogue bearing no substituent on its phenol ring, RhB-Sal. In aqueous solution, RhB-NSal displayed likewise a high selectivity but a lower sensitivity for Cu(2+) than that in acetonitrile, with a detection limit of 14.98 μM, still more sensitive than RhB-Sal in absorption. By virtue of these properties, RhB-NSal could be used as an "Off-On" fluorescent and colorimetric chemosensor for Cu(2+) in acetonitrile medium, and be developed to be a promising candidate of "Off-On" eye-naked chemosensor for Cu(2+) in a weakly acidic aqueous medium.
合成了一种新型罗丹明衍生物(RhB-NSal),其在2-羟基苯基部分的5-位带有吸电子基团-NO2,并研究了其在乙腈和乙酸盐水缓冲液/乙腈(2/3,v/v,pH 4.8)介质中对Cu(2+)的传感行为。在每种介质中,加入Cu(2+)后,RhB-NSal均观察到显著的吸收和荧光增强,同时伴随着从无色到粉红色的即时颜色变化。RhB-NSal与Cu(2+)结合形成1:1化学计量比的配合物,缔合常数分别为6.72(±0.03)×10(4) M(-1)和4.23(±0.03)×10(4) M(-1)。RhB-NSal对Cu(2+)表现出高选择性,优于可能具有竞争性的金属离子,除了Fe(3+)和Bi(3+)离子分别会对其对Cu(2+)的传感在吸收和荧光方面产生一点干扰。在干燥乙腈中,Cu(2+)引起RhB-NSal的吸光度和发射显著增强,检测限为0.49 μM,比其酚环上无取代基的已知类似物RhB-Sal表现出更高的灵敏度。在水溶液中,RhB-NSal同样对Cu(2+)表现出高选择性,但对Cu(2+) 的灵敏度低于在乙腈中的情况,检测限为14.98 μM,在吸收方面仍比RhB-Sal更灵敏。凭借这些特性,RhB-NSal可作为乙腈介质中Cu(2+)的“关-开”荧光和比色化学传感器,并有望开发成为弱酸性水性介质中Cu(2+)的“关-开”裸眼化学传感器的有前途候选者。