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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Effects of Surface Chemistry on Nonlinear Absorption, Scattering, and Refraction of PbSe and PbS Nanocrystals
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Effects of Surface Chemistry on Nonlinear Absorption, Scattering, and Refraction of PbSe and PbS Nanocrystals

机译:表面化学对PbSe和PbS纳米晶体的非线性吸收,散射和折射的影响

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Oleic acid capped lead sulfide (PbS) and lead selenide (PbSe) were synthesized, then subjected to a postsynthesis washing in a 1:1 ethanol/hexane solution. The relationship of third order nonlinear optical properties to nanocrystal surface chemistry as affected by washing was analyzed using nanosecond 532 nm Z-scan and measurement of near-IR radiative emission. The results indicated a significant change in optical nonlinearities which emerged only after the nanocrystals were washed in the ethanol/hexane mixture. Transmission electron microscopy of the oleic acid capped PbSe and PbS nanocrystals showed a cubic shape, narrow size distribution and an average size of ~10 nm. Neither size nor shape of the nanocrystals were modified by the washing process, indicating that all optical differences were related to changes in surface chemistry and the formation of deep trap states. The "as grown" nanocrystals showed high emission efficiency, weak saturable absorption, and a self-defocusing refractive index, n2, determined to be -(3.0 ± 0.9) x 10~(-14) and -(2.9 ± 0.6) x 10~(-14) cm~2/W for PbS and PbSe nanocrystals, respectively. After post-synthesis washing, the nanocrystals were converted to a reverse saturable absorbing and strongly scattering media with a self-focusing refractive index of (11.4 ± 2.0) x 10~(-14) and (12.7 ± 0.9) x 10~(-14) cm~2/W for PbS and PbSe nanocrystals, respectively. The fitted experimental Z-scan data for the samples after washing gave high values for the nonlinear absorption coefficient, β_(eff), in the range of 130-150 cm/GW. The appearance of reverse saturable absorption in the nanocrystals was due to the presence of trap states at the nanocrystal surface that were not present in the as-grown nanocrystals and did not show similar optical nonlinearity.
机译:合成了油酸封端的硫化铅(PbS)和硒化铅(PbSe),然后在1:1乙醇/己烷溶液中进行后合成洗涤。使用纳秒532 nm Z扫描和近红外辐射发射的测量分析了三阶非线性光学特性与受洗涤影响的纳米晶体表面化学的关系。结果表明光学非线性的显着变化,仅在将纳米晶体在乙醇/己烷混合物中洗涤后才出现。油酸封端的PbSe和PbS纳米晶体的透射电子显微镜显示立方形状,狭窄的尺寸分布和约10 nm的平均尺寸。纳米晶体的大小和形状均未通过洗涤过程进行修饰,表明所有光学差异均与表面化学变化和深陷阱态的形成有关。 “生长中的”纳米晶体显示出高发射效率,较弱的饱和吸收和自散焦折射率n2,确定为-(3.0±0.9)x 10〜(-14)和-(2.9±0.6)x 10对于PbS和PbSe纳米晶体,分别约为〜(-14)cm〜2 / W。合成后洗涤后,纳米晶体被转化为具有(11.4±2.0)x 10〜(-14)和(12.7±0.9)x 10〜(-)自聚焦折射率的反向饱和吸收和强散射介质。 14)PbS和PbSe纳米晶体分别为cm〜2 / W。洗涤后样品的拟合Z扫描实验数据在130-150 cm / GW的范围内给出了较高的非线性吸收系数β_(eff)值。纳米晶体中反向饱和吸收的出现是由于在纳米晶体表面存在陷阱态,该陷阱态在所生长的纳米晶体中不存在并且没有表现出相似的光学非线性。

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