Journal of Applied Physics · 2015 · 88 citations · 37 references
EngineeringLaser AblationSpot SizeChemistryLuminescence PropertyLaser FluencePolyethylene GlycolCarbon-based MaterialQuantum DotsIrradiation TimeMaterials ScienceNanotechnologyLaser Processing TechnologyGraphene Quantum DotGlassy CarbonLaser PhotochemistryNanomaterialsCarbon NanodotsApplied Physics
Photoluminescent carbon nanodots (C-dots) with size tunability and uniformity were fabricated in polyethylene glycol (PEG200N) solution using femtosecond laser ablation method. The size distributions and photoluminescence (PL) properties of C-dots are well controlled by adjusting the combined parameters of laser fluence, spot size, and irradiation time. The size reduction efficiency of the C-dots progressively increases with decreasing laser fluence and spot size. The optimal PL spectra are red-shifted and the quantum yields decrease with the increase in C-dots size, which could be attributed to the more complex surface functional groups attached on C-dots induced at higher laser fluence and larger spot size. Moreover, an increase in irradiation time leads to a decrease in size of C-dots, but long-time irradiation will result in the generation of complex functional groups on C-dots, subsequently the PL spectra are red-shifted.
37
Carbon nanodots: synthesis, properties and applications
Haitao Li, Zhenhui Kang, Yang Liu et al. · Journal of Materials Chemistry · 2012 · 2.7K citations
Engineering, Inorganic Photochemistry, Carbon Nanotechnology +16
Carbon Dots for Multiphoton Bioimaging
Li Cao, Xin Wang, Mohammed J. Meziani et al. · Journal of the American Chemical Society · 2007 · 2.2K citations · Full text
Carbon Dots for Optical Imaging in Vivo
Sheng‐Tao Yang, Li Cao, Pengju G. Luo et al. · Journal of the American Chemical Society · 2009 · 1.5K citations · Full text
Electrochemical Tuning of Luminescent Carbon Nanodots: From Preparation to Luminescence Mechanism
Lei Bao, Zhiling Zhang, Zhi‐Quan Tian et al. · Advanced Materials · 2011 · 992 citations