摘要
以光电活性染料3-氨基-5,10,15,20-四苯基铜卟啉通过酰胺化反应共价修饰石墨烯,得到一种新型功能复合材料(RGO-TPP),分别采用稳态吸收、荧光、全反射红外、拉曼、原子力显微镜和热重量分析表征材料的物理结构与性质,利用Z-扫描技术测试了材料的超快的近红外区三阶非线性光学性能(NLO)。结果表明,当激光波长800 nm,脉冲间隔70飞秒(fs),频率100 Hz,激光脉冲能量116 uj时,RGO-TPP复合材料对激光的能量调节阀值降低到原来的85%,有效地降低了激光的出射强度。
Photo-and redox-active organic dye[3-amino-5,10,15,20-tetra-phenyl-porphyrinato]-copper( II) covalently functionalized graphene composite( RGO-TPP) via amidation reaction has been synthesized and characterized by steady-state absorption,fluorescence,attenuated total reflection infrared( ATRIR) and Raman spectroscopies,atomic force microscope( AFM) and thermogravimetric analysis( TGA).Using the Z-scan technique its ultrafastly near-infrared third-order nonlinear optical( NLO) performance had been tested. The results show that the novel composite effectively adjusted the threshold value of the beam-out energy to 85% of the RGO individual at 800 nm,pulse duration 70 fs,repetition rate of 100 Hz,input intensity of 116 uj of the laser pulses.
出处
《应用化工》
CAS
CSCD
北大核心
2018年第1期14-17,共4页
Applied Chemical Industry
基金
教育部长江创新团队研究项目(IRT13R24)
关键词
调节阀值
卟啉
石墨烯
激光脉冲
threshold value
porphyrin
graphene
laser pulse