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Investigation of adsorption behavior and energy transfer of cationic porphyrins on clay surface at low loading levels by picosecond time-resolved fluorescence measurement

机译:皮秒时间分辨荧光测量研究低负载水平下阳离子卟啉在粘土表面的吸附行为和能量转移

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Time-resolved fluorescence and steady-state spectroscopic measurements were performed with +4-charged cationic porphyrins adsorbed on an anionic-type clay (Sumecton SA; SSA) surface at a low molecular loading level (10 % vs. cation-exchange capacity of clay) corresponding to an occupied area of ca 50 nm~2 per molecule. Absorption spectra indicated no interaction between transition moments of the porphyrins on the clay surface. An efficient energy-transfer process from donor to acceptor porphyrin was observed on the clay surface even under low porphyrin loading conditions. The efficiency of energy transfer obtained from the steady-state measurement was 65 %. Real-time behavior of the porphyrins was successfully captured during energy transfer. The rate constant of the energy transfer obtained from time-resolved fluorescence measurements was found to be 5.3 × 10~8 s~(-1). According to the efficiency and the rate constant, it is proposed that the adsorbed porphyrins did not have a uniform and fixed distribution.
机译:用低分子负载水平(10%vs.粘土的阳离子交换能力)吸附在阴离子型粘土(Sumecton SA; SSA)表面上的+4价阳离子卟啉进行时间分辨荧光和稳态光谱测量)对应于每个分子约50 nm〜2的占据面积。吸收光谱表明在粘土表面上的卟啉转变时刻之间没有相互作用。即使在低卟啉负载条件下,在粘土表面也观察到了从供体到受体卟啉的有效能量转移过程。从稳态测量获得的能量转移效率为65%。能量传递过程中成功捕获了卟啉的实时行为。通过时间分辨荧光测量获得的能量转移速率常数为5.3×10〜8 s〜(-1)。根据效率和速率常数,提出吸附的卟啉不具有均匀和固定的分布。

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