A novel fluorescent chemosensing material (2-MPT-SBA-15) for multianalyte detection in water was prepared through the functionalization of mesoporous silica (SBA-15) with a fluorescent chromophore, 5-methoxy-2-thiazoles (2-MPT). The characterization of the obtained material 2-MPT-SBA-15 shows that the organized structure is preserved after the post-grafting procedure. This hybrid material not only displayed pH sensitive fluorescent behavior with a dual-emission in the range of 1 to 5.7, but is also an optical sensor for the sensitive and selective detection of Cu2+ ions in water. Furthermore, both the sensing detection of pH and Cu2+ are very fast and reproducible.Chemistry, PhysicalMaterials Science, MultidisciplinarySCI(E)EI0ARTICLE424492...
An easy to synthesize amphiphilic dye is developed whose sensing behavior in surfactant assemblies c...
A highly sensitive and selective optical sensor for the determination of trace amounts of Cu2+ based...
Water-soluble naphthalene diimide based fluorescent chemosensor, N1, was designed for Cu2+ recogniti...
Ion sensors particularly organic fluorescent chemo sensors are very much researched in recent times ...
International audienceSBA-Pr-Is-TAP was synthesized via functionalization of SBA-15. The synthesized...
The potential of silicon-based fluorescent platforms for the detection of trace toxic metal ions was...
A sulfonate-based chemosensor 1 was designed and synthesized for sensing various analytes: Cu2+, Fe2...
In this work, a novel fluorescent probe CMC−GE−AQ with an effective sensitive detection ability for ...
The design and synthesis of selective and sensitive chemosensors for the quantification of environme...
SBA-Pr-Is-TAP was synthesized via functionalization of SBA-15. The synthesized hybrid nanomaterial w...
Herein, a hydrazine-based chromogenic, fluorogenic and electrochemical chemosensor BCC [1,5-bis(4-cy...
The Spanish Ministerio de Ciencia e Innovación (Project PID2019-104121 GB-I00) is also aknowledged. ...
CuII-macrocycle functionalized hexametaphos- phate-capped silica mesoporous nanoparticles have been ...
The self-organization of the proper subunits of a fluorescence chemosensor on the surface of silica ...
WOS:000831594200010 PubMed ID:35820529In this paper, we successfully synthesized a fluorescent hybr...
An easy to synthesize amphiphilic dye is developed whose sensing behavior in surfactant assemblies c...
A highly sensitive and selective optical sensor for the determination of trace amounts of Cu2+ based...
Water-soluble naphthalene diimide based fluorescent chemosensor, N1, was designed for Cu2+ recogniti...
Ion sensors particularly organic fluorescent chemo sensors are very much researched in recent times ...
International audienceSBA-Pr-Is-TAP was synthesized via functionalization of SBA-15. The synthesized...
The potential of silicon-based fluorescent platforms for the detection of trace toxic metal ions was...
A sulfonate-based chemosensor 1 was designed and synthesized for sensing various analytes: Cu2+, Fe2...
In this work, a novel fluorescent probe CMC−GE−AQ with an effective sensitive detection ability for ...
The design and synthesis of selective and sensitive chemosensors for the quantification of environme...
SBA-Pr-Is-TAP was synthesized via functionalization of SBA-15. The synthesized hybrid nanomaterial w...
Herein, a hydrazine-based chromogenic, fluorogenic and electrochemical chemosensor BCC [1,5-bis(4-cy...
The Spanish Ministerio de Ciencia e Innovación (Project PID2019-104121 GB-I00) is also aknowledged. ...
CuII-macrocycle functionalized hexametaphos- phate-capped silica mesoporous nanoparticles have been ...
The self-organization of the proper subunits of a fluorescence chemosensor on the surface of silica ...
WOS:000831594200010 PubMed ID:35820529In this paper, we successfully synthesized a fluorescent hybr...
An easy to synthesize amphiphilic dye is developed whose sensing behavior in surfactant assemblies c...
A highly sensitive and selective optical sensor for the determination of trace amounts of Cu2+ based...
Water-soluble naphthalene diimide based fluorescent chemosensor, N1, was designed for Cu2+ recogniti...