Purely organic room-temperature phosphorescence(RTP)and fluorescence dual-emission materials in aqueous solution have attracted growing attention.Herein,we report a fluorescencephosphorescence dual emission host-vip...Purely organic room-temperature phosphorescence(RTP)and fluorescence dual-emission materials in aqueous solution have attracted growing attention.Herein,we report a fluorescencephosphorescence dual emission host-vip complex by simple assembly of cucurbit[8]uril(CB[8])and4-(4-bromophenyl)pyridinium derivative in water.Macrocyclic confinement and unique 1:2 host-vip structure could effectively inhibit non-radiative transition of the vip and the quenching of water molecule,thus induce effective RTP emission in water(τ_(RTP)=0.472 ms,Φ_(RTP)=1.37%).Specifically,based on competitive binding,this host-vip complex exhibits rapid ratiometric luminescent detection behavior to 3-nitrotyrosine,a specific biomarker of kidney injury,with a low limit of detection of 10.7 nmol/L.This work highlights the great potential of macrocyclic-confinement-derived RTP materials in biomarker detection,and will undoubtedly broaden the utilization scope of RTP.展开更多
p-t-Butyl-calixarene bonded silica stationary phase(CBS) for high performance liquid chromatography was prepared via condensation reaction on the surface of solid .The stationary phase was characterized by means of el...p-t-Butyl-calixarene bonded silica stationary phase(CBS) for high performance liquid chromatography was prepared via condensation reaction on the surface of solid .The stationary phase was characterized by means of elemental analysis and FTIR. The chromatographic performance of CBS was studied by using disubstituted benzenes as the solutes and methanol-water or methanol-buffer as the mobile phases, and compared with that obtained on CPS and ODS. The results show that the chromrtographic process can proceed in various retention mechanism, such as π-π, hydrogen-bonding, charge-transfer and inclusion complexation, besides hydrophobic interaction.展开更多
A calix[8]arene-bonded gel silica stationary phase(DCABS) was prepared by using coupling reagent(KH560). Its structure was characterized by FTIR, elemental analysis and thermal analysis. The chromatographic performanc...A calix[8]arene-bonded gel silica stationary phase(DCABS) was prepared by using coupling reagent(KH560). Its structure was characterized by FTIR, elemental analysis and thermal analysis. The chromatographic performance of DCABS was studied by using different solutes as probes and stationary phases as reference. The results show that the new material has an excellent reversed-phase chromatographic property. The new bonded phase can provide various sites for analytes, such as the hydrophobic interaction, hydrogen-bonding, π-π, electrostatic interactions. Meanwhile, it was observed that the chromatographic performance of DCABS is partially different from CABS because of elimination of the butyl groups.展开更多
基金financially supported by the National Natural Science Foundation of China(Nos.22171069 and 21871075)the Educational Committee of Hebei Province(No.JZX2024012)the Tianjin Natural Science Foundation(No.23JCYBJC00800)。
文摘Purely organic room-temperature phosphorescence(RTP)and fluorescence dual-emission materials in aqueous solution have attracted growing attention.Herein,we report a fluorescencephosphorescence dual emission host-vip complex by simple assembly of cucurbit[8]uril(CB[8])and4-(4-bromophenyl)pyridinium derivative in water.Macrocyclic confinement and unique 1:2 host-vip structure could effectively inhibit non-radiative transition of the vip and the quenching of water molecule,thus induce effective RTP emission in water(τ_(RTP)=0.472 ms,Φ_(RTP)=1.37%).Specifically,based on competitive binding,this host-vip complex exhibits rapid ratiometric luminescent detection behavior to 3-nitrotyrosine,a specific biomarker of kidney injury,with a low limit of detection of 10.7 nmol/L.This work highlights the great potential of macrocyclic-confinement-derived RTP materials in biomarker detection,and will undoubtedly broaden the utilization scope of RTP.
文摘p-t-Butyl-calixarene bonded silica stationary phase(CBS) for high performance liquid chromatography was prepared via condensation reaction on the surface of solid .The stationary phase was characterized by means of elemental analysis and FTIR. The chromatographic performance of CBS was studied by using disubstituted benzenes as the solutes and methanol-water or methanol-buffer as the mobile phases, and compared with that obtained on CPS and ODS. The results show that the chromrtographic process can proceed in various retention mechanism, such as π-π, hydrogen-bonding, charge-transfer and inclusion complexation, besides hydrophobic interaction.
文摘A calix[8]arene-bonded gel silica stationary phase(DCABS) was prepared by using coupling reagent(KH560). Its structure was characterized by FTIR, elemental analysis and thermal analysis. The chromatographic performance of DCABS was studied by using different solutes as probes and stationary phases as reference. The results show that the new material has an excellent reversed-phase chromatographic property. The new bonded phase can provide various sites for analytes, such as the hydrophobic interaction, hydrogen-bonding, π-π, electrostatic interactions. Meanwhile, it was observed that the chromatographic performance of DCABS is partially different from CABS because of elimination of the butyl groups.