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Optical limiting of penta-azadentate complexes in solution for picosecond pulses

机译:皮秒脉冲溶液中五氮杂齿络合物的光学限制

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Abstract: The passive optical limiters are of significant for protecting sensors and human eyes from high intensity laser. The selection of materials is still the key point for optical power limiters. The optical limiting performances for five new pentaazadentate metal complexes with transmission of 0.45 - 0.70 in a 1 cm cell in tetrahydrofuran have been measured at 532 nm with 35 ps pulses, in which the reverse saturable absorption from the singlet$YLD@singlet excited state is responsible for the optical limiting. The optical limiting thresholds of pentaazadentate and benzopentaazadentate cadmium complexes at T/T$-o$/ $EQ 0.5 are 44 mJ/cm$+2$/ and 146 mJ/cm$+2$/ respectively, the lowest nonlinear transmittance for pentaazadentate complex I is 7.7%, while the incident maximum fluence reaches to 881 mJ/cm$+2$/. The bounds of figure of merit-like are estimated at 1.7 - 8.7. The limiting thresholds are strongly influenced by the nature of the substituents on the benzene ring. Electron withdrawing groups of the complexes can enhance the limiting capability, while the effect of heavy atom acts opposite roles. The optical limiting abilities are compared with C$-60$/, tetra- phenyl-tetrabenzoporophyrin-zinc and octanoxyl- phthalocyanine free base at same conditions. The sequence of the limiting capability is pentaazadentate cadmium complex $GRT@C$-60$/ $GRT tetra-phenyl-tetrabenzoporphyrin-zinc $GRT octanoxyl-phthalocyanine free base.!14
机译:摘要:无源光学限制器对于保护传感器和人眼免受高强度激光的侵害具有重要意义。材料的选择仍然是光功率限制器的关键。在532 nm波长下以35 ps脉冲测量了五种新的五齿金属配合物在1 cm单元中的透射率为0.45-0.70的光学极限性能,脉冲为35 ps,其中单重态$ YLD @单峰激发态的反向饱和吸收为负责光学限制。五氮杂齿和苯并五氮杂齿镉络合物在T / T $ -o $ / $ EQ 0.5处的光学极限阈值分别为44 mJ / cm $ + 2 $ /和146 mJ / cm $ + 2 $ /,这是五氮杂齿形的最低非线性透射率复合体I为7.7%,而入射最大通量达到881 mJ / cm $ + 2 $ /。绩效指标的范围估计为1.7-8.7。极限阈值受苯环上取代基的性质的强烈影响。配合物的吸电子基团可以增强限制能力,而重原子的作用相反。在相同条件下,将光限制能力与C $ -60 $,四苯基-四苯并卟啉-锌和辛烷氧基-酞菁游离碱进行比较。极限能力的顺序是五氮杂齿酸镉络合物$ GRT @ C $ -60 $ / $ GRT四苯基-四苯并卟啉-锌$ GRT辛烷氧基-酞菁游离碱!14

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