화학공학소재연구정보센터
Materials Chemistry and Physics, Vol.186, 131-137, 2017
Tuning the carbon nanotube photoluminescence enhancement at addition of cysteine through the change of external conditions
The enhancement of the photoluminescence (PL) from the semiconducting single-walled carbon nano tubes suspended with single-stranded DNA (ssDNA) in water observed after amino acids doping is the largest at cysteine addition. The PL intensity increased through the passivation of p-defects on the carbon nanotube sidewall by the cysteine molecules due to thiol group. The effect of several external factors on the cysteine-induced enhancement of PL from carbon nanotubes covered with ssDNA was studied: UV irradiation, tip or bath sonication treatment of the suspension, the ionic strength and pH of aqueous suspension. It turned out that all these factors have an essential influence on the dependence of the PL enhancement on the cysteine concentration through inducing of additional defects on nanotube as well as a change of the nanotube surface coverage with polymer. The obtained experimental results demonstrated that PL from carbon nanotubes can be exploited successfully for the monitoring of cysteine concentration in aqueous solution. (C) 2016 Elsevier B.V. All rights reserved.