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Experimental evidence of fragile-to-strong dynamic crossover in DNA hydration water

机译:DNA水合水中脆弱到强烈的动态交叉的实验证据

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We used high-resolution quasielastic neutron scattering spectroscopy to study the single-particle dynamics of water molecules on the surface of hydrated DNA samples. Both H2O and D2O hydrated samples were measured. The contribution of scattering from DNA is subtracted out by taking the difference of the signals between the two samples. The measurement was made at a series of temperatures from 270 down to 185 K. The relaxing-cage model was used to analyze the quasielastic spectra. This allowed us to extract a Q-independent average translational relaxation time of water molecules as a function of temperature. We observe clear evidence of a fragile-to-strong dynamic crossover (FSC) at T-L=222 +/- 2 K by plotting log versus T. The coincidence of the dynamic transition temperature T-c of DNA, signaling the onset of anharmonic molecular motion, and the FSC temperature T-L of the hydration water suggests that the change of mobility of the hydration water molecules across T-L drives the dynamic transition in DNA. (c) 2006 American Institute of Physics.
机译:我们使用高分辨率的准弹性中子散射光谱技术研究了水合DNA样品表面上水分子的单粒子动力学。测量了H2O和D2O的水合样品。通过获取两个样本之间信号的差值,减去DNA散射的贡献。在从270到185 K的一系列温度下进行测量。松弛笼模型用于分析准弹性光谱。这使我们能够提取水分子的Q独立平均平移弛豫时间作为温度的函数。通过绘制log 与T的关系图,我们可以清楚地看到TL = 222 +/- 2 K时,脆弱至强烈的动态交叉(FSC)的证据。DNA的动态转变温度Tc的重合,表明了非谐分子运动的开始,以及水合水的FSC温度TL暗示了水合水分子跨TL迁移率的变化驱动了DNA的动态转变。 (c)2006年美国物理研究所。

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