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Nuclear spin relaxation of sodium cations in bacteriophage Pf1 solutions

机译:Pf1噬菌体溶液中钠阳离子的核自旋弛豫

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摘要

The nuclear magnetic resonance (NMR) spectra for the I=3/2 ~(23)Na cation dissolved into filamentous bacteriophage Pf 1 solutions display line splittings and relaxation times consistent with an interaction between the ~(23)Na nuclear quadrupole moment and the electric field gradient produced by the negatively charged Pf1 particles.The ~(23)Na NMR line splittings and relaxation rates corresponding to magnetization recovery and single,double,and triple quantum coherence decays are measured in Pf1 solutions and compared to theoretical values.The deviation of the observed dc spectral density J(0) from the equal first harmonic J(omega_0) and second harmonic J(2omega_0) values as J(omega_0)=J(2omega_0) not= J(0) in these solutions suggests that ion migration in the electric field gradient of the Pf1 particles produces an anisotropic relaxation mechanism.Correlation functions and thus spectral densities for this process are calculated from solutions to the Fokker-Planck equation for radial motion in an electric potential and used to estimate measured relaxation rates.Appropriate electricpotentials are generated from the solutions to the Poisson-Boltzmann equation for a charged Pf1 particle in aqueous phase,functions that lead to theoretical estimates of NMR line splittings consistent with experimental observations.
机译:溶解在丝状噬菌体Pf 1溶液中的I = 3/2〜(23)Na阳离子的核磁共振(NMR)谱图显示线分裂和弛豫时间与〜(23)Na核四极矩和Pd 1相互作用之间的相互作用一致在Pf1溶液中测量〜(23)Na NMR线分裂和弛豫速率,分别对应于磁化恢复和单,双和三量子相干衰减,并将其与理论值进行比较。在这些解决方案中从相等的一次谐波J(omega_0)和二次谐波J(2omega_0)值(J(omega_0)= J(2omega_0)not = J(0))观察到的直流频谱密度J(0)的建议表明离子迁移Pf1粒子在电场中的梯度会产生各向异性弛豫机制。此过程的相关函数和光谱密度是根据径向Mo的Fokker-Planck方程的解计算得出的根据水的带电Pf1粒子的Poisson-Boltzmann方程的解生成适当的电势,该函数导致与实验观察值相符的NMR线裂的理论估计。

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