The photoluminescence properties of carbon quantum dots depend on their size and the properties of surface functional groups. The N-doped carbon dots (using small molecular ethylenediamine) with high quantum yield and excellent dispersibility were synthesized by one-step hydrothermal method with biomass tar that was generated in the reductive smelting process as a precursor. Rapid and accurate Fe3+ detection based on the selective fluorescence quenching effect of N-doped carbon quantum dots was achieved. The results showed that the as-synthesized N-doped carbon quantum dots were regular spherical, uniform in size with an average particle size of 2. 64 nm with a quantum yield of 26. 1%, and the crystal lattice spacing was 0. 25 nm, correspon...
This work aims to enhance the value of palm empty fruit bunches (EFBs), an abundant residue from the...
This study established a ferric ion (Fe3+) detection method as a result of the fluorescence quenchin...
Fengshou Wu,1,2,* Huifang Su,3,* Kai Wang,1 Wai-Kwok Wong,2 Xunjin Zhu2 1Key Laboratory for Green C...
To investigate the effect of nitrogen on the photoluminescence properties of carbon quantum dots (CQ...
Carbon quantum dots (CQDs) are a new type of fluorescent nanomaterials, which not only have stable f...
Nitrogen doping can effectly adjust the compositions and structures of carbon dots and hence enhance...
Carbon quantum dots (C-Dots) have drawn extensive attention in recent years due to their stable phys...
Nitrogen doping can effectly adjust the compositions and structures of carbon dots and hence enhance...
In the present study, highly luminescent N-doped carbon quantum dots were synthesized by surface pas...
A new method had been developed for the preparation of fluorescent Magnesium doped carbon quantum do...
Carbon quantum dots (CQDs) as a rising star of carbon nanomaterials have extensive applications due ...
Carbon dots have been employed in a series of exciting fields such as bioimaging, drug delivery, flu...
A facile, green, and high-output hydrothermal synthesis was proposed for the fabrication of highly f...
Carbon dots (CDs) have caught enormous attention owing to their distinctive properties, such as thei...
Herein, we report a facile one-step synthetic strategy for fabrication of three (blue, green and yel...
This work aims to enhance the value of palm empty fruit bunches (EFBs), an abundant residue from the...
This study established a ferric ion (Fe3+) detection method as a result of the fluorescence quenchin...
Fengshou Wu,1,2,* Huifang Su,3,* Kai Wang,1 Wai-Kwok Wong,2 Xunjin Zhu2 1Key Laboratory for Green C...
To investigate the effect of nitrogen on the photoluminescence properties of carbon quantum dots (CQ...
Carbon quantum dots (CQDs) are a new type of fluorescent nanomaterials, which not only have stable f...
Nitrogen doping can effectly adjust the compositions and structures of carbon dots and hence enhance...
Carbon quantum dots (C-Dots) have drawn extensive attention in recent years due to their stable phys...
Nitrogen doping can effectly adjust the compositions and structures of carbon dots and hence enhance...
In the present study, highly luminescent N-doped carbon quantum dots were synthesized by surface pas...
A new method had been developed for the preparation of fluorescent Magnesium doped carbon quantum do...
Carbon quantum dots (CQDs) as a rising star of carbon nanomaterials have extensive applications due ...
Carbon dots have been employed in a series of exciting fields such as bioimaging, drug delivery, flu...
A facile, green, and high-output hydrothermal synthesis was proposed for the fabrication of highly f...
Carbon dots (CDs) have caught enormous attention owing to their distinctive properties, such as thei...
Herein, we report a facile one-step synthetic strategy for fabrication of three (blue, green and yel...
This work aims to enhance the value of palm empty fruit bunches (EFBs), an abundant residue from the...
This study established a ferric ion (Fe3+) detection method as a result of the fluorescence quenchin...
Fengshou Wu,1,2,* Huifang Su,3,* Kai Wang,1 Wai-Kwok Wong,2 Xunjin Zhu2 1Key Laboratory for Green C...