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Multiscale nuclear magnetic relaxation dispersion of complex liquids in bulk and confinement

机译:多尺度核磁松弛分散批量和禁闭的复杂液体

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The nuclear magnetic relaxation dispersion (NMRD) technique consists of measurement of the magnetic-field dependence of the longitudinal nuclear-spin-lattice relaxation rate 1/T-1. Usually, the acquisition of the NMRD profiles is made using a fast field cycling (FFC) NMR technique that varies the magnetic field and explores a very large range of Larmor frequencies (10 kHz omega(0)/(2 pi) 40 MHz). This allows extensive explorations of the fluctuations to which nuclear spin relaxation is sensitive. The FFC technique thus offers opportunities on multiple scales of both time and distance for characterizing the molecular dynamics and transport properties of complex liquids in bulk or embedded in confined environments. This review presents the principles, theories and applications of NMRD for characterizing fundamental properties such as surface correlation times, diffusion coefficients and dynamical surface affinity (NMR wettability) for various confined liquids. The basic longitudinal and transverse relaxation equations are outlined for bulk liquids. The nuclear relaxation of a liquid confined in pores is considered in detail in order to find the biphasic fast exchange relations for a liquid at proximity of a solid surface. The physical-chemistry of liquids at solid surfaces induces striking differences between NMRD profiles of aprotic and protic (water) liquids embedded in calibrated porous disordered materials. A particular emphasis of this review concerns the extension of FFC NMR relaxation to industrial applications. For instance, it is shown that the FFC technique is sufficiently rapid for following the progressive setting of cement-based materials (plasters, cement pastes, concretes). The technique also allows studies of the dynamics of hydrocarbons in proximity of asphaltene nano-aggregates and macro-aggregates in heavy crude oils as a function of the concentration of asphaltenes. It also gives new information on the wettability of petroleum fluids (bri
机译:核磁弛豫分散(NMRD)技术包括测量纵向核 - 旋转晶格松弛率1 / T-1的磁场依赖性。通常,使用快速现场循环(FFC)NMR技术进行NMRD简档的获取,该NMR技术变化磁场并探讨了大量的大量大频频率(10kHz&ω(0)/(2pi)& 40 MHz)。这允许广泛探索核自旋弛豫敏感的波动。因此,FFC技术提供了多种时间和距离的多种尺度的机会,用于表征块状或嵌入在狭窄的环境中的复杂液体的分子动力学和传输性能。本综述介绍了NMRD的原理,理论和应用,用于表征各种限制液体的表面相关时间,扩散系数和动态表面亲和力(NMR润湿性)的基本性质。基本的纵向和横向松弛方程被散装液体概述。详细地考虑了孔中限制在孔中的液体的核松弛,以便在固体表面接近液体的双相快速交换关系。固体表面液体的物理化学物质在嵌入校准多孔无误材料中嵌入的非质子和质子(水)液体的NMRD型材之间的显着差异。本综述特别强调涉及扩展FFC NMR弛豫对工业应用。例如,表明FFC技术在水泥基材料(膏药,水泥糊剂,混凝土)之后足够快。该技术还允许研究以沥青质浓度的函数的沥青质纳米聚集体和重质原油中的宏观聚集体的烃类的动态。它还提供有关石油液润湿性的新信息(Bri

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