1) photostationary state

光稳态
2) steady-state fluorescence

稳态荧光
1.
Critical micelle concentration (CMC), aggregation numbers and micropolarity of four sodium branched-alkyl benzene sulfonates were determined by steady-state fluorescence probe method in which pyrene was used as fluorescence probe and benzophenone was used as quencher.
以芘为探针、二苯酮为猝灭剂,用稳态荧光法测定了合成的4种链长分别为10、12、14、16碳,苯环均在β位取代的对烷基苯磺酸钠的临界胶团浓度、胶团聚集数和微极性。
2.
Hydrophobically associating behaviors of HmCmFG in solutions of different NaCl concentrations were studied by steady-state fluorescence emission and excitation spectra using pyrene as fluorescence probe.
采用稳态荧光法,通过探针芘的发射光谱与激发光谱研究了HmCmFG在NaCl溶液中的疏水缔合行为。
3) steady-state spectrum

稳态光谱
1.
The energy transfer process of phosphorescent dye PtOEP(2,3,7,8,12,13,17,18-octaethyl-21H,23H-porphine platinum(II) doped organic molecule Alq(tris(8-hydroxyquinoline) aluminum) thin films were studied by steady-state spectrum and time-resolved spectrum.
用稳态光谱和时间分辨的超快光谱研究了不同浓度磷光染料PtOEP掺杂有机小分子Alq薄膜的发光特性和能量转移。
4) steady-state fluorescence

稳态荧光法
1.
The measured results were in accordance with the results by other methods such as electronic conductivity and surface tension,therefore,steady-state fluorescence method was proved to be feasible as a method of measuring aggregation properties of anionic Gemini.
用稳态荧光法测定合成的Gemini阴离子表面活性剂水溶液的聚集性质,并与其它方法如电导法、表面张力法测定的结果进行对比,结果吻合,表明荧光法作为一种测定Gemini阴离子表面活性剂水溶液聚集性质的方法是可行的,并对Gemini和单基表面活性剂在临界胶束浓度Ccmc前后荧光相对强度变化规律做了简要分析。
5) optical bistability

光学双稳态
1.
Hybrid optical bistability by use of fiber Fabry-Perot filter;

基于光纤Fabry-Perot滤波器的电光混合光学双稳态
2.
Effect of spectral line with Doppler broadening on optical bistability in a multi mode ring laser;
激光谱线的多普勒展宽对多模环型激光器中光学双稳态产生的影响
3.
Properties of optical bistability of nematic liquid crystal in planar F - P cavity are discussed in detail in this paper.
本文详细讨论了在平面F—P腔中向列型液晶光学双稳态的性质在。
6) Stationary photocurrent

稳态光电流
补充资料:光稳态
分子式:
CAS号:
性质: 在化学反应体系中,当其组分中至少有一种是吸收了光子时达到的稳态,称为光稳态。在这种状态下,所形成的瞬态分子物种的生成速率和消耗速率相等。
CAS号:
性质: 在化学反应体系中,当其组分中至少有一种是吸收了光子时达到的稳态,称为光稳态。在这种状态下,所形成的瞬态分子物种的生成速率和消耗速率相等。
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