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具有可调谐双色激光性能的组成梯度铯铅卤化物钙钛矿纳米线。

Composition-Graded Cesium Lead Halide Perovskite Nanowires with Tunable Dual-Color Lasing Performance.

机构信息

Beijing National Laboratory for Molecular Sciences, State Key Laboratory of Rare Earth Materials Chemistry and Applications, PKU-HKU Joint Laboratory in Rare Earth Materials and Bioinorganic Chemistry, College of Chemistry and Molecular Engineering, Peking University, Beijing, 100871, China.

Beijing Key Laboratory for Optical Materials and Photonic Devices, Department of Chemistry, Capital Normal University, Beijing, 100048, China.

出版信息

Adv Mater. 2018 Jul;30(27):e1800596. doi: 10.1002/adma.201800596. Epub 2018 May 21.

Abstract

Cesium lead halide (CsPbX ) perovskite has emerged as a promising low-threshold multicolor laser material; however, realizing wavelength-tunable lasing output from a single CsPbX nanostructure is still constrained by integrating different composition. Here, the direct synthesis of composition-graded CsPbBr I nanowires (NWs) is reported through vapor-phase epitaxial growth on mica. The graded composition along the NW, with an increased Br/I from the center to the ends, comes from desynchronized deposition of cesium lead halides and temperature-controlled anion-exchange reaction. The graded composition results in varied bandgaps along the NW, which induce a blueshifted emission from the center to the ends. As an efficient gain media, the nanowire exerts position-dependent lasing performance, with a different color at the ends and center respectively above the threshold. Meanwhile, dual-color lasing with a wavelength separation of 35 nm is activated simultaneously at a site with an intermediate composition. This position-dependent dual-color lasing from a single nanowire makes these metal halide perovskites promising for applications in nanoscale optical devices.

摘要

铯铅卤(CsPbX)钙钛矿已成为一种很有前途的低阈值多色激光材料;然而,要实现单个 CsPbX 纳米结构的波长可调谐激光输出,仍然受到集成不同成分的限制。在这里,通过在云母上进行气相外延生长,直接合成了组成渐变的 CsPbBr I 纳米线(NWs)。NW 中沿梯度组成的 Br/I 从中心到两端逐渐增加,这是由于铯铅卤的沉积不同步和温度控制的阴离子交换反应所致。这种梯度组成导致 NW 沿长度的能带隙不同,从而导致从中心到两端的发射蓝移。作为一种有效的增益介质,纳米线表现出与位置相关的激光性能,在阈值以上,其两端的颜色不同,中心的颜色也不同。同时,在具有中间组成的位置,同时激活了波长分离为 35nm 的双波长激光。这种来自单个纳米线的位置相关双波长激光,使得这些金属卤化物钙钛矿有望应用于纳米光学器件。

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