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首页> 外文期刊>Journal of Applied Physics >All-inorganic cesium lead halide perovskite nanocrystals for solar-pumped laser application
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All-inorganic cesium lead halide perovskite nanocrystals for solar-pumped laser application

机译:全无机铯卤化卤化卤化物钙钛矿用于太阳能泵浦激光应用的纳米晶体

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摘要

We demonstrate a low-concentrated solar-pumped laser (SPL) with natural sunlight by using an all-inorganic cesium lead halide perovskite (CsPbBr_xI_(3-x)) nanocrystal (NC) dispersed in toluene as a sensitizer. The perovskite NCs exhibit substantial advantages for SPL applications because of their broad absorption and narrow photoluminescence (PL) spectra with high quantum yield using inexpensive commercial precursors. We successfully synthesized CsPbBr_xI_(3_x) NCs with precisely tuned PL wavelengths from 581 to 612 nm by altering the I/Br ratio to achieve spectral overlap with Nd~(3+) ions, which have been widely used as a laser medium for SPLs. The measurement results show that the laser output power is highly sensitive to the peak PL wavelength of the NCs, and the highest laser output was obtained at the peak wavelength of 595 nm. Although the synthesized NCs have a wider absorption band, the laser output power obtained was much less than that of an organic dye of rhodamine 6G (R6G). The numerical analyses show that the optimal peak PL wavelength is 10 nm shorter than the absorption peak of Nd~(3+) ions because of the reflection property of the dichroic mirror coated on the input window. Moreover, we found that the concentration of NCs needs to be optimized in response to the peak PL wavelength. The calculations show that a laser output power 2.7 times greater than that of R6G can be obtained under an optimal peak PL wavelength of 575 nm and a concentration of 24 g/l for the CsPbBr_xI_(3_x) NCs.
机译:我们通过使用分散在甲苯中作为敏化剂的全无机铯卤化卤化锂(CSPBBR_XI_(3-X))纳米晶(NC)展示了一种具有天然阳光的低浓度的太阳能泵浦激光(SPL)。由于它们具有廉价商业前体具有高量子产量的宽吸收和窄的光致发光(PL)光谱,Perovskite NCS表现出显着的优点。通过改变I / BR比以实现I / BR比率,通过581至612nm成功地合成了CSPBBR_XI_(3_X)NC,以实现具有ND〜(3+)离子的光谱重叠,这已广泛用作SPLS的激光介质。测量结果表明,激光输出功率对NCS的峰值PL波长非常敏感,并且在595nm的峰值波长下获得最高激光输出。尽管合成的NC具有较宽的吸收带,但是获得的激光输出功率远小于罗丹明6G的有机染料(R6G)。数值分析表明,由于在输入窗口上涂覆在输入窗口上的二向色镜的反射特性,最佳峰PL波长比ND〜(3+)离子的吸收峰短10nm。此外,我们发现,需要响应于峰值PL波长进行优化NCS的浓度。计算表明,在575nm的最佳峰值PL波长下,可以获得比R6G的激光输出功率大2.7倍,以及用于CSPBBR_XI_(3_X)NC的浓度为24g / L.

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  • 来源
    《Journal of Applied Physics 》 |2020年第24期| 243104.1-243104.9| 共9页
  • 作者单位

    S-Frontier Division Toyota Motor Corporation Susono Shizuoka 410-1193 Japan Department of Engineering Science The University of Electro-Communications Chofu Tokyo 182-0021 Japan;

    Department of Engineering Science The University of Electro-Communications Chofu Tokyo 182-0021 Japan;

    Department of Engineering Science The University of Electro-Communications Chofu Tokyo 182-0021 Japan;

    Department of Engineering Science The University of Electro-Communications Chofu Tokyo 182-0021 Japan;

    S-Frontier Division Toyota Motor Corporation Susono Shizuoka 410-1193 Japan;

    Department of Engineering Science The University of Electro-Communications Chofu Tokyo 182-0021 Japan;

    Department of Physics Tokai University Hiratsuka Kanagawa 259-1292 Japan;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
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