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二维碲聚合物膜用于超快光子学。

Two-dimensional tellurium-polymer membrane for ultrafast photonics.

机构信息

Shenzhen Engineering Laboratory of phosphorene and Optoelectronics, International Collaborative Laboratory of 2D Materials for Optoelectronics Science and Technology of Ministry of Education, College of Optoelectronic Engineering, Shenzhen University, Shenzhen 518060, China.

出版信息

Nanoscale. 2019 Mar 28;11(13):6235-6242. doi: 10.1039/c9nr00736a.

Abstract

Tellurium (Te) exhibits many intriguing properties including thermoelectricity, photoelectricity, piezoelectricity, and photoconductivity, and is widely used in detectors, sensors, transistors, and energy devices. Herein, ultrathin two-dimensional (2D) Te nanosheets were fabricated using a facile and cost-effective liquid-phase exfoliation method. Mixing the as-prepared 2D Te nanosheets with polyvinylpyrrolidone (PVP) provided a uniform 2D Te/PVP membrane. The 2D Te/PVP membrane exhibited excellent mechanical properties, thermal properties, and stability. The nonlinear optical properties of the membrane were characterized over the spectral range of 800 to 1550 nm using open-aperture Z-scan technology. A large nonlinear absorption coefficient of about 10-1 cm GW-1 over the whole tested wavelength range demonstrated the efficient broadband saturable absorptivity of the 2D Te/PVP membrane. Using the 2D Te/PVP membrane as a saturable absorber (SA), a highly stable femtosecond laser with a pulse duration of 829 fs in the communication band was obtained. This work highlights the promise of 2D Te/PVP membranes in ultrafast photonics and Te as a new 2D material for use in photonic devices such as all-optical modulators, switches, and thresholds.

摘要

碲(Te)具有许多有趣的性质,包括热电、光电、压电和光电导性,广泛应用于探测器、传感器、晶体管和能源器件。在此,采用简便且经济高效的液相剥离法制备了超薄二维(2D)碲纳米片。将制备的 2D 碲纳米片与聚乙烯吡咯烷酮(PVP)混合,提供了均匀的 2D Te/PVP 膜。2D Te/PVP 膜具有优异的机械性能、热性能和稳定性。使用开孔径 Z 扫描技术在 800 至 1550nm 的光谱范围内对膜的非线性光学性质进行了表征。整个测试波长范围内约为 10-1cmGW-1 的大非线性吸收系数表明 2D Te/PVP 膜具有有效的宽带饱和吸收特性。使用 2D Te/PVP 膜作为可饱和吸收体(SA),获得了在通信波段具有 829fs 脉冲持续时间的高度稳定的飞秒激光。这项工作突出了 2D Te/PVP 膜在超快光子学中的应用前景,以及 Te 作为用于全光调制器、开关和阈值等光子器件的新型 2D 材料的潜力。

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