Clay G Omar, Schaffer Chris B, Kleinfeld David
Department of Physics, University of California at San Diego, La Jolla, California 92093, USA.
J Chem Phys. 2007 Jan 14;126(2):025102. doi: 10.1063/1.2404678.
Porphyrin molecules have a highly conjugated cyclic structure and are theorized to have unusually large two-photon absorptivities (sigmaTPA), i.e., sigmaTPA approximately 10(2) GM. The authors tested this claim. Ultrafast two-photon absorption (TPA) spectroscopy was performed on solutions of hemoglobin, which contains a naturally occurring metaloporphyrin. They used a pump-probe technique to directly detect the change in transmission induced by TPA over the wavelength range of lambda0=780-880 nm. As controls, they measured the TPA of the dyes rhodamine 6G and B; their measurements both verify and extend previously reported values. In new results, hemoglobin was found to have a peak two-photon absorptivity of sigmaTPA approximately 150 GM at lambda0=825 nm, near a resonance of the Soret band. This value supports theoretical expectations. They also found a significant difference in the TPA of carboxyhemoglobin versus oxyhemoglobin, e.g., sigmaTPA=61 GM versus sigmaTPA=18 GM, respectively, at lambda0=850 nm, which shows that the ligand affects the electronic states involved in TPA.
卟啉分子具有高度共轭的环状结构,理论上具有异常大的双光子吸收系数(σTPA),即σTPA约为10(2) GM。作者对这一说法进行了验证。对含有天然金属卟啉的血红蛋白溶液进行了超快双光子吸收(TPA)光谱分析。他们采用泵浦-探测技术,在λ0 = 780 - 880 nm波长范围内直接检测由TPA引起的透射率变化。作为对照,他们测量了罗丹明6G和B染料的TPA;他们的测量结果既验证又扩展了先前报道的值。新的结果表明,在λ0 = 825 nm处,血红蛋白的双光子吸收系数峰值σTPA约为150 GM,接近Soret带的共振峰。该值支持理论预期。他们还发现,在λ0 = 850 nm处,羧基血红蛋白与氧合血红蛋白的TPA存在显著差异,例如,σTPA分别为61 GM和18 GM,这表明配体影响了参与TPA的电子态。