...
首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Ultrafast Excited-State Dynamics and Dispersion Studies of Third-Order Optical Nonlinearities in Novel Corroles
【24h】

Ultrafast Excited-State Dynamics and Dispersion Studies of Third-Order Optical Nonlinearities in Novel Corroles

机译:新型花键中三阶光学非线性的超快激发态动力学和色散研究

获取原文
获取原文并翻译 | 示例
           

摘要

Ultrafast nonlinear optical (NLO) properties of four novel Corroles in the visible spectral range (660—800 nm) were evaluated using picosecond Z-scan technique. Ultrafast excited state dynamics have also been appraised with picosecond (ps) and femtosecond (fs) degenerate pump—probe techniques using excitation wavelengths of 800 and 600 nm, respectively. The excitation by 800 nm photons resulted in two-photon absorption at adequately high peak intensities, thereby facilitating the access to higher excited states (S_n). The nonradiative relaxation mechanisms from these states, reflected in the pump-probe data, consisted of double-exponential decay with a slow component in the range of 54-277 ps and faster component in the range of 2.0 to 2.5 ps. When excited with 600 nm photons (unfocused), photoinduced absorption was observed with the first excited state S1 being populated, and as a consequence single decay was observed in the data of all molecules studied. These retrieved lifetimes were analogous to those obtained with picosecond pump-probe data. The long lifetime is attributed to nonradiative decay from the S, state with possible contribution from triplet states, whereas the shorter lifetime is attributed to the internal conversion (S2 to S1*), followed by vibrational relaxation (S1* to S1) processes. Time-resolved fluorescence lifetime measurements revealed the magnitude of radiative lifetimes to be in the nanosecond regime. NLO coefficients were evaluated from the Z-scan data at wavelengths of 660, 680, 700, 740, and 800 nm. Large two-photon absorption coefficients (β)/cross-sections (σ2) at 740 nm/680 nm were recorded for these molecules, making them apposite for applications such as two-photon induced photodynamic therapy and lithography. Figure of merit, T, was <1 for all molecules at 740 and 800 nm, suggesting that these molecules find use in photonic device applications.
机译:使用皮秒Z扫描技术评估了四种新型Corroles在可见光谱范围(660-800 nm)中的超快非线性光学(NLO)特性。还已经用皮秒(ps)和飞秒(fs)简并泵浦探测技术评估了超快激发态动力学,该技术分别使用800和600 nm的激发波长。 800 nm光子的激发导致在足够高的峰强度下吸收两个光子,从而有助于进入更高的激发态(S_n)。这些状态的非辐射弛豫机制反映在泵浦探针数据中,由双指数衰减组成,其慢分量在54-277 ps范围内,而快分量在2.0到2.5 ps范围内。当用600 nm光子(未聚焦)激发时,观察到光诱导的吸收,其中填充了第一激发态S1,结果在所有研究分子的数据中观察到了单衰变。这些获得的寿命类似于用皮秒泵浦探针数据获得的寿命。较长的寿命归因于S状态的非辐射衰减,并可能由三重态引起,而较短的寿命归因于内部转换(S2至S1 *),然后是振动弛豫(S1 *至S1)过程。时间分辨的荧光寿命测量显示辐射寿命的量级在纳秒范围内。从Z扫描数据在660、680、700、740和800 nm波长处评估NLO系数。记录了这些分子在740 nm / 680 nm处的大双光子吸收系数(β)/横截面(σ2),使其适用于双光子诱导的光动力疗法和光刻。对于740和800 nm处的所有分子,品质因数T均小于1,表明这些分子可用于光子器件应用。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号