Trifonov Anton, Buchvarov Ivan, Lohr Andreas, Würthner Frank, Fiebig Torsten
Eugene F. Merkert Chemistry Center, Boston College, 2609 Beacon St., Chestnut Hill, Massachusetts 02467, USA.
Rev Sci Instrum. 2010 Apr;81(4):043104. doi: 10.1063/1.3340892.
A broadband, femtosecond transient circular dichroism (TRCD) spectrometer has been developed and tested in the wavelength range from 350 to 700 nm. The spectrometer uses a femtosecond probe white light with well-defined circular polarization. The latter is modulated by the polarization of a narrowband seed pulse. We have implemented a dual-beam probe geometry with phase-locked detection technique to increase the signal-to-noise ratio and to reduce optical artifacts. The spectrometer allows the acquisition of TRCD spectra with subpicosecond time resolution and typical noise levels of 10(-4) absorbance units. The performance of this instrument has been demonstrated on bis(merocyanine) nanorod aggregates in tetrahydrofurane/methylcyclohexane solution. The case study confirmed that this spectrometer is effective for the investigation of chiral properties in various molecular and nanostructural systems that have transient spectra in the UV-visible spectral range.
一种宽带飞秒瞬态圆二色性(TRCD)光谱仪已被研制出来,并在350至700纳米的波长范围内进行了测试。该光谱仪使用具有明确圆偏振的飞秒探测白光。后者由窄带种子脉冲的偏振进行调制。我们采用了具有锁相检测技术的双光束探测几何结构,以提高信噪比并减少光学伪像。该光谱仪能够以亚皮秒时间分辨率和10(-4)吸光度单位的典型噪声水平采集TRCD光谱。该仪器的性能已在四氢呋喃/甲基环己烷溶液中的双(部花青)纳米棒聚集体上得到证明。该案例研究证实,这种光谱仪对于研究在紫外-可见光谱范围内具有瞬态光谱的各种分子和纳米结构系统中的手性性质是有效的。