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MOF‐Derived Porous Dodecahedron rGO‐Co<sub>3</sub>O<sub>4</sub> for Robust Pulse Generation

Xiaohui Li, Mingqi An, Gang Li, Yueheng Han, Penglai Guo, Enci Chen, Jiyi Hu, Zhuoying Song, Hongbing Lu, Jiangbo Lu

2022Advanced Materials Interfaces32 citationsDOI

Abstract

Abstract As a member of the porous crystalline material family, metal organic framework (MOF) materials have been widely used in the fields of photodetection, photovoltaic cells, nonlinear optical devices, supercapacitors, and biological imaging. However, few reports about robust pulsed laser based on MOF‐derived nanomaterials especially the one with unique structure have been reported till now. In this paper, porous dodecahedron rGO‐Co 3 O 4 is synthesized by calcining the MOF template and systematically analyzed. Interestingly, the rGO‐Co 3 O 4 is successfully prepared as a saturable absorber (SA) by using the optical deposition method and the modulation depth of the rGO‐Co 3 O 4 SA is 8.38%. Through different dispersion management, robust pulses with 1.5 µm dissipative soliton (DS) in the frequency domain and square wave pulse (SWP) in the time domain can be obtained in the erbium‐doped fiber laser based on rGO‐Co 3 O 4 SA. The 3‐dB bandwidth and pulse duration of the DS are 6.81 nm and 62.01 ps, respectively. The pulse tuning range of the SWP is 1.24 ns ≈ 19.14 ns. It is worth mentioning that the threshold of the SWP is 53.72 mW, and the mode‐locked laser can be self‐started at the pump power of 72.04 mW. The experimental results show that the porous dodecahedral rGO‐Co 3 O 4 material derived from MOF can be used as an excellent nonlinear optical modulator, providing a new choice for material processing.

Topics & Concepts

Materials scienceDodecahedronNanomaterialsPorosityLaserPulse durationOptoelectronicsSaturable absorptionNanotechnologyFiber laserOpticsComposite materialGeometryMathematicsWavelengthPhysicsAdvanced Fiber Laser TechnologiesNonlinear Waves and SolitonsLaser-Matter Interactions and Applications
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