细菌视紫红质

xì jūn shì zǐ hónɡ zhì
  • bacteriorhodopsin;bacterial rhodopsin;bacteria rhodopsin
细菌视紫红质细菌视紫红质
  1. 为了研究分析嗜盐古生菌物种与细菌视紫红质(BR)蛋白基因资源,分离纯化得到极端嗜盐古生菌AB3。

    In order to study and analyze the species and bacteriorhodopsin ( BR ) protein resource , a strain of extremely halophilic archaea AB3 was isolated .

  2. 基于细菌视紫红质生物光学功能材料的特性及应用研究进展

    Progress of Study on the Properties and Applications of the Bio-optical Function Material Based on Bacteriorhodopsin

  3. 不同pH条件下细菌视紫红质的共振拉曼光谱研究

    Resonance Raman study of bacterio-rhodopsin at different pH

  4. 本实验测定了不同pH条件下嗜盐菌紫膜中细菌视紫红质(bR)的共振拉曼光谱。

    Resonance Raman spectra of Bacteriorhodopsin ( bR ) were obtained at different pH.

  5. CeO2纳米晶修饰的细菌视紫红质薄膜M态寿命的研究

    Studies on the lifetime of m-state in bacteriorhodopsin film modified with ceo_2 nanocrystalline

  6. 报道了在高碱性pH下,紫膜中细菌视紫红质(BR)表面结构变化的直观信息。

    The direct information of the surface structure change of purple membrane under high pH was obtained .

  7. 所说的蛋白质就是细菌视紫红质(bR),即一种分子,当它吸收了光线以后,就会发生结构变化。

    The protein in question is bacteriorhodopsin ( bR ), a molecule that undergoes a structural change when it absorbs light .

  8. 细菌视紫红质(bR)是一种独特的光敏蛋白,具有光致变色和光驱质子泵功能。

    Bacteriorhodopsin ( bR ) is a photosensitive protein , which acts as a photochromic material as well as a light-driven proton pump .

  9. 阐述了利用细菌视紫红质薄膜(BR薄膜)优良的非线性光学特性作为光寻址的空间光调制器的实验研究。

    An optically addressed spatial light modulator ( OA SLM ) is presented by using the excellent nonlinear optical characteristics of bacteriorhodopsin films ( BR films ) .

  10. 细菌视紫红质(菌紫质,BR)具有独特的光致变色效应。这种具有生物活性的光敏蛋白质具有许多其它有机光致变色材料所没有的综合优势,是一种性能优良的光致变色材料。

    Bacteriorhodopsin ( BR ), a biomolecular material , has the unique photochromic properties . This photosensitive protein holds the all-around advantage compared with other organic photochromic materials .

  11. 细菌视紫红质(bacteriorhodopsin,简称bR)是由嗜盐菌中提取出的一种光敏蛋白质,它是一种新型的生物光子学材料。

    Bacteriorhodopsin ( bR ) is the light transacting protein in the purple membrane . It is a new kind of biological optical materials .

  12. 利用MATLAB软件对细菌视紫红质(BR)膜光电器件的脉冲响应实验数据进行拟合,得到器件的冲激响应函数。

    Based on experimental measurement of the pulse response of the bacteriorhodopsin ( BR ) film photocell , the impact response function of the device is obtained by data fitting with MATLAB software .

  13. 用电泳法在ITO导电玻璃上沉积出定向细菌视紫红质薄膜,与铜电极构成夹细菌视紫红质薄膜和导电凝胶结构的光电探测器。

    Through electrophoresis method , oriented bacteriorhodopsin films are deposited on ITO conductive glass , with which and a copper electrode , a photodetector with bacteriorhodopsin films and conductive gel sandwiched is constructed .

  14. 细菌视紫红质(Bacteriorhodopsin,BR)是一种具有优良光致变色特性的光敏蛋白分子,具有极好的抗疲劳性和高的光转换量子效率,可用于光学图像信息的获取和存储。

    Bacteriorhodopsin ( BR ) is a kind of light sensitive protein with excellent anti-fatigue property and high optical transition quantum efficiency , by which optical image information can be acquired and stored .

  15. 利用闪光光解法和紫外可见光谱法研究了室温条件下,pH值的增加和干燥时间的延长对细菌视紫红质(bR)聚乙烯醇(PVA)薄膜光循环过程中M态衰减动力学的影响。

    The influence of increase of pH and dehydration time on the decay kinetics of M state in bacteriorhodopsin ( bR ) poly ( vinyl alcohol ) ( PVA ) films was studied by UV vis spectrophotometry and flash photolysis under room conditions .

  16. 细菌视紫红质(bR)膜对黄光和蓝光的透射具有互补调制特性,由解黄光、蓝光透射光强的速率方程而得到黄光和蓝光的互补抑制透射特性的解析表达式和图示结果。

    Bacteriorhodopsin film has a special property of complementary suppression modulated transmission of yellow and blue beams . Resolving the transmission rate equations of the yellow and blue beams , the analytical formulae are obtained and graphic results are shown .

  17. 文章通过紫外可见光光纤光谱仪测试野生型细菌视紫红质(BRWT)在经过532nm的YAG激光的泵浦激励后,薄膜对探测光的吸收光谱变化情况来着重讨论BRWT的光谱响应特性。

    In this paper , the spectrum response characteristic of the wild type bacteriorhodopsin molecule film was studied by using pump probe method . After the samples was excited by 532 nm YAG laser beam , the absorption spectra were probed by an optical fiber spectrum analysis ( OSA ) .

  18. 细菌视紫红质能化态时表面电位的非线性光学机制

    Study on Nonlinear Optical Mechanism of Surface Potential in Energized Bacteriorhodopsin

  19. 基因突变细菌视紫红质薄膜的长寿命M态光存储

    Long Lifetime M State Optical Storage in Genetic Mutant Bacteriorhodopsin Film

  20. 细菌视紫红质激子的饱和密度及激子长度的研究

    Study on Saturation Density and Length of Excitons in Bacteriorhodopsin

  21. 细菌视紫红质的质子传输机理

    Molecular Mechanism for Proton Translocation of Bacteriorhodopsin Proton Therapy The Transmission Loop

  22. 细菌视紫红质在全光逻辑器件中的研究与应用

    Research and application of all optical logic gates by bacteriorhodopsin

  23. 细菌视紫红质热变性结构变化的光谱研究

    Spectral Studies of Changes of Thermal Denaturation structure of Bacteriorhodopsin

  24. 三氯乙酸对细菌视紫红质电子光谱的研究

    Effect of Trichloroacetic Acid on the Electronic Spectra of Bacteriorhodopsin

  25. 由细菌视紫红质测定高斯光束的束腰位置(英文)

    Determination of the Waist Position of a Gaussian Beam by Bacteriorhodopsin Film ~

  26. 细菌视紫红质近场光存储特性的研究

    Study on the Near-Field Optical Storage Property of Bacteriorhodopsin

  27. 细菌视紫红质蛋白的光谱分析与光电特性应用

    Spectral analysis and application of photoelectric characteristics in bacteriorhodopsin

  28. 对细菌视紫红质中质子泵出分子机理进行了描述。

    This paper mainly described molecular mechanism of proton pumping out from bacteriorhodopsin .

  29. 细菌视紫红质三阶非线性光感应超快过程研究

    Photo-induced ultrafast process of third-order optical nonlinearity in bacteriorhodopsin

  30. 野生型细菌视紫红质薄膜光谱响应特性的实验研究

    Study on the Spectrum Response Characteristic Based on the Wide Type Bacteriorhodopsin Film