光离子化,photoionization
multi-photon ionization多光子离化
1.There exists some controversial between the nature of the avalanche ionization(AI) and the role of the multi-photon ionization(MPI).激光诱导薄膜损伤过程中,雪崩离化(AI)和多光子离化(MPI)的性质和作用到目前仍然存在争议。
2.Based on Stuart et al\'s model equation and by means of numerical method,this paper has studied the interrelation of laser pulse intensity threshold Ith versus pulse duration τ and damage threshold fluence Fthversus τ,and the effect of multi-photon ionization(MPI) and avalanche ionization(AI) on electron density in fused silica dielectric films induced by exponential pulsed laser.多光子离化和雪崩离化是激光诱导薄膜材料损伤的主要机理,但是其各自起到的作用随激光脉宽的变化是不同的。
3)fire ionization光电离子化
4)single photon ionization单光子离子化
1.The combustion/pyrolysis behavior of polyvinyl chloride (PVC) was investigated by on line single photon ionization (SPI)/resonance enhanced multi photon ionization (REMPI) time of flight mass spectrometry (TOFMS).用单光子离子化 (SPI) /共振增强的多光子离子化 (REMPI) 飞行时间质谱法对PVC材料的燃烧裂变过程进行了在线研究 ,发现与其它有机材料不同 ,PVC涂层材料在 30 0℃时即发生裂变 ,生成苯系物、萘及少量多环芳烃。
5)Cationic photocuring阳离子光固化
1.Synthesis and characterization of cationic photocuring resin;阳离子光固化树脂的合成与表征
6)plasma/photocatalysis等离子体光催化
1.The advances on plasma/photocatalysis including mechanism, spectrum, removal influence factors and synergy were introduced, and further development of technology was also presented.低温等离子体光催化协同净化技术集成了低温等离子体和光催化的优势,两者相互协同,优势互补,是一种非常高效、节能的降解有机废气的方法。
延伸阅读

光离子化检测器分子式:CAS号:性质:利用高能量的紫外线,使电离电位低于紫外线能量的组分离子化,生成正离子和自由电子,在电场作用下产生电信号。适用范围较广泛,特别是在环境监测中使用。