Mikhonin Aleksandr V, Maurer Marta K, Reese Chad E, Asher Sanford A
Department of Chemistry, University of Pittsburgh, Pittsburgh, Pennsylvania 15260, USA.
Appl Spectrosc. 2005 Dec;59(12):1534-40. doi: 10.1366/000370205775142476.
We built a transient absorption spectrophotometer that can determine transient absorption spectral changes that occur at times as fast as approximately 200 ns and as slow as a minute. The transient absorption can be induced by a temperature-jump (T-jump) or by optical pumping from the deep ultraviolet (UV) to the infrared (IR) by use of single ns Nd:YAG laser pulses. Our use of a fiber-optic spectrometer coupled to a XeF flashlamp makes the collection of transient spectra easy and convenient in the spectral range from the near IR (1700 nm) down to the deep UV (200 nm), with high signal-to-noise (S/N) ratios. The spectral resolution is determined by the specific configuration of the fiber-optic spectrometer (grating groove density, fiber diameter, slit width) and varies between 0.3 and 10 nm. The utility of this spectrometer was demonstrated by measuring the rate at which a polymerized crystalline colloidal array (PCCA) of poly(N-isopropylacrylamide) nanogel particles optically switch light due to a T-jump induced by nanosecond 1.9 microm laser pulses. In addition, we measured the rate of optical switching induced by a 3 ns 355 nm pump pulse in PCCA functionalized with azobenzene.
我们搭建了一台瞬态吸收分光光度计,它能够测定在约200纳秒至一分钟这样宽的时间范围内发生的瞬态吸收光谱变化。瞬态吸收可由温度跃升(T-jump)引发,也可通过使用纳秒级钕钇铝石榴石(Nd:YAG)激光脉冲,从深紫外(UV)到红外(IR)进行光泵浦来诱导。我们将光纤光谱仪与氙氟(XeF)闪光灯联用,使得在从近红外(1700纳米)到深紫外(200纳米)的光谱范围内轻松便捷地收集瞬态光谱成为可能,且具有高信噪比(S/N)。光谱分辨率由光纤光谱仪的具体配置(光栅槽密度、光纤直径、狭缝宽度)决定,在0.3至10纳米之间变化。通过测量聚(N-异丙基丙烯酰胺)纳米凝胶颗粒的聚合晶体胶体阵列(PCCA)因纳秒级1.9微米激光脉冲引发的T-jump而产生光开关的速率,证明了该光谱仪的实用性。此外,我们还测量了在偶氮苯功能化的PCCA中,由3纳秒355纳米泵浦脉冲诱导的光开关速率。