A fluorescence turn-on chemosensor based on rhodamine B derivative (FD10) has been developed as a highly sensitive chemosensor for Hg2+. A prominent fluorescence enhancement was measured in the presence of Hg2+, which...A fluorescence turn-on chemosensor based on rhodamine B derivative (FD10) has been developed as a highly sensitive chemosensor for Hg2+. A prominent fluorescence enhancement was measured in the presence of Hg2+, which was in agreement with the changes in the absorption spectrum. Furthermore, by means of laser scanning fluorescence microscopy experiments, it was demonstrated that FD10 was cell-permeable and could be used as a fluorescent probe for monitoring Hg2+ in living cells.展开更多
A conjugated 8-hydroxyquinoline( 8-HQ)-based fluorescent chemosensor( 1) for Zinc ion( Zn^(2+)) and Cadmium ion( Cd^(2+)) was developed in aqueous solution and used for Zinc ion living cells bioimaging. The probe 1 wa...A conjugated 8-hydroxyquinoline( 8-HQ)-based fluorescent chemosensor( 1) for Zinc ion( Zn^(2+)) and Cadmium ion( Cd^(2+)) was developed in aqueous solution and used for Zinc ion living cells bioimaging. The probe 1 was weakly fluorescent,but displayed a strong fluorescence at 580 nm with a large Stokes shift of150 nm in the presence of Zn^(2+) or Cd^(2+). This probe allows the detections of Zn^(2+) in the range of 0. 8-10 μmol/L and Cd^(2+) in the range of 0. 8-8 μmol/L,with the limit of detections of 0. 2 and 0. 6μmol/L for Zn^(2+) and Cd^(2+),respectively. The present probe was successfully used for fluorescence bioimaging of Zn^(2+) or Cd^(2+) in the living cells.展开更多
A new tripodal rhodamine B derivative 2 was designed and synthesized by tripodal trialdehyde and rhodamine B hydrazide for the first time. This derivative could be used as a fluorescent chemosensor for the selective a...A new tripodal rhodamine B derivative 2 was designed and synthesized by tripodal trialdehyde and rhodamine B hydrazide for the first time. This derivative could be used as a fluorescent chemosensor for the selective and sensitive determination of copper(II) in Tris-HCl buffer and ethanol aqueous mixed media. Under the optimum conditions described herein,fluorescence enhancement at 557/577 nm was linearly related to the concentration of copper(II) in the range of 0.10 to 10.00×10-5 mol·L-1,with a corre-lation coefficient of R2=0.9964 (n=15) and a detection limit of 1.129×10-7 mol·L-1 (the relative standard deviation for five repeated measurements at 4.00×10-5 mol·L-1 Cu(II) was 2.2%). The absorbance meas-urements at 557 nm were linearly related to the concentration of Cu(II) in the range of 0.50 to 25.00×10-5 mol·L-1,with a correlation coefficient of R2=0.9948 (n=13) and a detection limit of 3.338×10-7mol·L-1.展开更多
A novel fluorescence "turnon" probe for CH^2+ detection has been designed based on a Cu^2+ triggered spirolactam ringopening reaction. The synthetic probe is a doubleresponsive fluorescent and colorimetric Cu^2+s...A novel fluorescence "turnon" probe for CH^2+ detection has been designed based on a Cu^2+ triggered spirolactam ringopening reaction. The synthetic probe is a doubleresponsive fluorescent and colorimetric Cu^2+specific sensor. In aqueous solution, it exhibits high selectivity and excellent sensitivity. With a significant color change visible to the naked eye at the concentration of 3 I.tM (ca. 0.19 mg/L), about one magnitude lower than the WHO (World Health Organization) recommended level (2.0 mg/L) for Cu^2+ions in drinking water, the probe could be used to monitor Cu^2+ ions in drinking water.展开更多
A new fluorescent "on-off' chemosensor for Hg2+ initiated by a derivative of rhodamine B was designed and synthesized. Compound 1 exhibited high sensitivity and selectivity for Hg2+ over other commonly coexistent ...A new fluorescent "on-off' chemosensor for Hg2+ initiated by a derivative of rhodamine B was designed and synthesized. Compound 1 exhibited high sensitivity and selectivity for Hg2+ over other commonly coexistent metal ions in aqueous media, Upon the addition of Hg2+, the spirocyclic ring of probe is opened and a significant enhancement of visible color and fluorescence in the range of 500-600 nm is observed, The colorimetric and fluorescent response to Hg2+ can be conveniently detected by the naked eye, which provides a facile method for visual detection of Hg2+, From the molecular structure and spectral results of 1, an irreversible, hydrolysis, desulfurization reaction mechanism is proposed.展开更多
A novel fluorescence probe for the detection of Cu2+ has been designed and synthesized, which is based on a ring-opening reaction of spirolactam triggered by Cu2+ . This probe exhibits excellent Cu2+ ion selectivity a...A novel fluorescence probe for the detection of Cu2+ has been designed and synthesized, which is based on a ring-opening reaction of spirolactam triggered by Cu2+ . This probe exhibits excellent Cu2+ ion selectivity as well as significant color changes visible to the naked eye at the concentration of 0.03 mM (ca. 2.0 mg/L), the WHO (World Health Organization) recommended level (2.0 mg/L) of Cu2+ ions in drinking water. This novel rhodamine-based fluorescence probe can be directly used to detect Cu2+ with satisfactory sensitivity and selectivity in aqueous solution.展开更多
Based on Rhodamine,two novel fluorescent Hg2+ chemosensors(R1,R2) were synthesized from inexpensive starting materials.They were designed and synthesized with o-aminophenol and o-phenylenediamine derivatives as the...Based on Rhodamine,two novel fluorescent Hg2+ chemosensors(R1,R2) were synthesized from inexpensive starting materials.They were designed and synthesized with o-aminophenol and o-phenylenediamine derivatives as the Hg2+ chelator,the comparison between the photophysical properties of two chemosensor molecules was made.The chemosensors were designed with a photoinduced electron transfer(PET) mechanism.After binding to Hg2+ which blocks the PET process,the fluorescence intensity of the chemosensors was enhanced by up to 15-fold.They exhibit very strong fluorescence responses to Hg2+ and have remarkably higher selectivity for Hg2+ than for other metal ions including K+,Na+,Ca2+,Mg2+,Cd2+,Mn2+,Ni2+,Co2+,Zn2+,Cu2+,Cr3+,Fe3+,pb2+,Ag+,Al3+,Fe2+ and Sn2+ in Tris-HC1/sodium phosphate buffer.The fluorescence enhancement of R2 towards Hg2+ maintains stable in wide pH span(6.4-8.8) aqueous solutions.展开更多
通过乙二醛将1,1-二(4-甲基苯基)-2-(4-氨基苯基)-2-苯基乙烯和罗丹明B酰肼连接起来,合成了一种四苯乙烯官能团化的罗丹明B衍生物TPE-Rh B.利用IR,NMR,MS和元素分析等对其进行了表征,确定了分子结构.并通过循环伏安分析法、紫外-可见光...通过乙二醛将1,1-二(4-甲基苯基)-2-(4-氨基苯基)-2-苯基乙烯和罗丹明B酰肼连接起来,合成了一种四苯乙烯官能团化的罗丹明B衍生物TPE-Rh B.利用IR,NMR,MS和元素分析等对其进行了表征,确定了分子结构.并通过循环伏安分析法、紫外-可见光谱法、分子荧光光谱法等分别考察了它的电化学和光学性质.研究表明TPE-Rh B的电子亲合能为3.66 e V,有望开发为电子传输材料.此化合物在纯乙醇溶液中,几乎没有荧光,在乙醇/水的混合溶剂中具有典型聚集诱导发光(AIE)性能.更为重要的是在乙醇/水(V∶V=1∶1,Tris-HCl p H 7.0)混合溶液中能对Fe^(3+)实现"off-on"荧光识别,并裸眼可观察到溶液颜色从淡黄色变成粉红色,且几乎不受其他共存离子的干扰.探针与Fe^(3+)的结合常数为3.12×10~3,检出限可达3.53×10^(-7) mol·L^(-1),Fe^(3+)离子含量范围在6×10^(-5)~1.8×10^(-4) mol·L^(-1)时,荧光强度与Fe^(3+)离子浓度呈良好的线性关系(R^2=0.9915),并通过Job’s曲线、紫外和荧光滴定、核磁滴定初步确定了化合物TPE-Rh B和Fe^(3+)的络合机理.展开更多
基金Supported by the National Natural Science Foundation of China (Grant No. 20801015)Shanghai Leading Academic Discipline Project (Grant No. B108)
文摘A fluorescence turn-on chemosensor based on rhodamine B derivative (FD10) has been developed as a highly sensitive chemosensor for Hg2+. A prominent fluorescence enhancement was measured in the presence of Hg2+, which was in agreement with the changes in the absorption spectrum. Furthermore, by means of laser scanning fluorescence microscopy experiments, it was demonstrated that FD10 was cell-permeable and could be used as a fluorescent probe for monitoring Hg2+ in living cells.
基金Shanghai Municipal Natural Science Foundation,China(No.16ZR1401700)
文摘A conjugated 8-hydroxyquinoline( 8-HQ)-based fluorescent chemosensor( 1) for Zinc ion( Zn^(2+)) and Cadmium ion( Cd^(2+)) was developed in aqueous solution and used for Zinc ion living cells bioimaging. The probe 1 was weakly fluorescent,but displayed a strong fluorescence at 580 nm with a large Stokes shift of150 nm in the presence of Zn^(2+) or Cd^(2+). This probe allows the detections of Zn^(2+) in the range of 0. 8-10 μmol/L and Cd^(2+) in the range of 0. 8-8 μmol/L,with the limit of detections of 0. 2 and 0. 6μmol/L for Zn^(2+) and Cd^(2+),respectively. The present probe was successfully used for fluorescence bioimaging of Zn^(2+) or Cd^(2+) in the living cells.
基金Supported by the Foundation of the Governor of Guizhou Province, China (Grant No. 200617)the Talented Person Foundation of Guizhou University (Grant No. 2007039)
文摘A new tripodal rhodamine B derivative 2 was designed and synthesized by tripodal trialdehyde and rhodamine B hydrazide for the first time. This derivative could be used as a fluorescent chemosensor for the selective and sensitive determination of copper(II) in Tris-HCl buffer and ethanol aqueous mixed media. Under the optimum conditions described herein,fluorescence enhancement at 557/577 nm was linearly related to the concentration of copper(II) in the range of 0.10 to 10.00×10-5 mol·L-1,with a corre-lation coefficient of R2=0.9964 (n=15) and a detection limit of 1.129×10-7 mol·L-1 (the relative standard deviation for five repeated measurements at 4.00×10-5 mol·L-1 Cu(II) was 2.2%). The absorbance meas-urements at 557 nm were linearly related to the concentration of Cu(II) in the range of 0.50 to 25.00×10-5 mol·L-1,with a correlation coefficient of R2=0.9948 (n=13) and a detection limit of 3.338×10-7mol·L-1.
基金supported in part by the National Natural Science Foundation of China (20921063,20877090 & 20872172)the National High Technology Research and Development Program of China (2007AA06A407)
文摘A novel fluorescence "turnon" probe for CH^2+ detection has been designed based on a Cu^2+ triggered spirolactam ringopening reaction. The synthetic probe is a doubleresponsive fluorescent and colorimetric Cu^2+specific sensor. In aqueous solution, it exhibits high selectivity and excellent sensitivity. With a significant color change visible to the naked eye at the concentration of 3 I.tM (ca. 0.19 mg/L), about one magnitude lower than the WHO (World Health Organization) recommended level (2.0 mg/L) for Cu^2+ions in drinking water, the probe could be used to monitor Cu^2+ ions in drinking water.
基金financially supported by the National Natural Science Foundation of China(Nos.20972143,21375113)Program for New Century Excellent Talents in University(No.NCET-11-0950)
文摘A new fluorescent "on-off' chemosensor for Hg2+ initiated by a derivative of rhodamine B was designed and synthesized. Compound 1 exhibited high sensitivity and selectivity for Hg2+ over other commonly coexistent metal ions in aqueous media, Upon the addition of Hg2+, the spirocyclic ring of probe is opened and a significant enhancement of visible color and fluorescence in the range of 500-600 nm is observed, The colorimetric and fluorescent response to Hg2+ can be conveniently detected by the naked eye, which provides a facile method for visual detection of Hg2+, From the molecular structure and spectral results of 1, an irreversible, hydrolysis, desulfurization reaction mechanism is proposed.
基金supported in partial by the National Natural Science Foundation of China (20921063 & 20877090)the National High Technology Research and Development Program (863 Program, 2007AA06A407)
文摘A novel fluorescence probe for the detection of Cu2+ has been designed and synthesized, which is based on a ring-opening reaction of spirolactam triggered by Cu2+ . This probe exhibits excellent Cu2+ ion selectivity as well as significant color changes visible to the naked eye at the concentration of 0.03 mM (ca. 2.0 mg/L), the WHO (World Health Organization) recommended level (2.0 mg/L) of Cu2+ ions in drinking water. This novel rhodamine-based fluorescence probe can be directly used to detect Cu2+ with satisfactory sensitivity and selectivity in aqueous solution.
基金Supported by the National Natural Science Foundation of China(No.21172178).
文摘Based on Rhodamine,two novel fluorescent Hg2+ chemosensors(R1,R2) were synthesized from inexpensive starting materials.They were designed and synthesized with o-aminophenol and o-phenylenediamine derivatives as the Hg2+ chelator,the comparison between the photophysical properties of two chemosensor molecules was made.The chemosensors were designed with a photoinduced electron transfer(PET) mechanism.After binding to Hg2+ which blocks the PET process,the fluorescence intensity of the chemosensors was enhanced by up to 15-fold.They exhibit very strong fluorescence responses to Hg2+ and have remarkably higher selectivity for Hg2+ than for other metal ions including K+,Na+,Ca2+,Mg2+,Cd2+,Mn2+,Ni2+,Co2+,Zn2+,Cu2+,Cr3+,Fe3+,pb2+,Ag+,Al3+,Fe2+ and Sn2+ in Tris-HC1/sodium phosphate buffer.The fluorescence enhancement of R2 towards Hg2+ maintains stable in wide pH span(6.4-8.8) aqueous solutions.
文摘通过乙二醛将1,1-二(4-甲基苯基)-2-(4-氨基苯基)-2-苯基乙烯和罗丹明B酰肼连接起来,合成了一种四苯乙烯官能团化的罗丹明B衍生物TPE-Rh B.利用IR,NMR,MS和元素分析等对其进行了表征,确定了分子结构.并通过循环伏安分析法、紫外-可见光谱法、分子荧光光谱法等分别考察了它的电化学和光学性质.研究表明TPE-Rh B的电子亲合能为3.66 e V,有望开发为电子传输材料.此化合物在纯乙醇溶液中,几乎没有荧光,在乙醇/水的混合溶剂中具有典型聚集诱导发光(AIE)性能.更为重要的是在乙醇/水(V∶V=1∶1,Tris-HCl p H 7.0)混合溶液中能对Fe^(3+)实现"off-on"荧光识别,并裸眼可观察到溶液颜色从淡黄色变成粉红色,且几乎不受其他共存离子的干扰.探针与Fe^(3+)的结合常数为3.12×10~3,检出限可达3.53×10^(-7) mol·L^(-1),Fe^(3+)离子含量范围在6×10^(-5)~1.8×10^(-4) mol·L^(-1)时,荧光强度与Fe^(3+)离子浓度呈良好的线性关系(R^2=0.9915),并通过Job’s曲线、紫外和荧光滴定、核磁滴定初步确定了化合物TPE-Rh B和Fe^(3+)的络合机理.