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用小角中子散射法测量一维受限水的密度:孔径和水合水平依赖性

Density measurement of 1-d confined water by small angle neutron scattering method: pore size and hydration level dependences.

作者信息

Liu Dazhi, Zhang Yang, Liu Yun, Wu Jianlan, Chen Chia-Cheng, Mou Chung-Yuan, Chen Sow-Hsin

机构信息

Department of Nuclear Science and Engineering, Massachusetts Institute of Technology, Cambridge, Massachusetts 02139, USA.

出版信息

J Phys Chem B. 2008 Apr 10;112(14):4309-12. doi: 10.1021/jp710331k. Epub 2008 Mar 15.

Abstract

Small angle neutron scattering (SANS) is used to measure the absolute density of water contained in 1-D cylindrical pores of a silica material MCM-41-S with pore diameters of 19 and 15 A. By being able to suppress the homogeneous nucleation process inside the narrow pore, one can keep water in the liquid state down to at least 160 K. From a combined analysis of SANS data from both H(2)O and D(2)O hydrated samples, we determined the absolute value of the density of 1-D confined water. We found that the average density of water inside the fully hydrated 19 A pore is 8% higher than that of the bulk water at room temperature. The temperature derivative of the density shows a pronounced peak at T(L) = 235 K signaling the crossing of the Widom line at ambient pressure and confirming the existence of a liquid-liquid phase transition at an elevated pressure. Pore size and hydration level dependences of the density are also studied.

摘要

小角中子散射(SANS)用于测量孔径为19埃和15埃的二氧化硅材料MCM - 41 - S的一维圆柱形孔中所含的水的绝对密度。通过能够抑制狭窄孔内的均匀成核过程,可以将水保持在液态直至至少160K。通过对H₂O和D₂O水合样品的SANS数据进行综合分析,我们确定了一维受限水密度的绝对值。我们发现,在完全水合的19埃孔内,水的平均密度比室温下的本体水高8%。密度的温度导数在T(L) = 235K处出现明显峰值,表明在环境压力下穿过了维德曼线,并证实了在高压下存在液 - 液相转变。还研究了密度对孔径和水合水平的依赖性。

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