1999
DOI: 10.1063/1.478158
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“Two-step” model of molecular diffusion in silicalite

Abstract: The influence of the particle ''memory'' on long-range diffusion in the channel network of silicalite is taken into account by considering pairs of subsequent steps between the channel intersections. It is shown that in this case the correlation rule between the principal elements of the diffusion tensor has to be modified by including an additional term, which takes account of the deviation of molecular propagation from complete randomness. The obtained relations are discussed in terms of molecular dynamics s… Show more

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Cited by 42 publications
(52 citation statements)
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“…This structural difference should be the main source of the different behavior observed in this particular process. In order to elucidate the influence of specific regions on the reaction the transitions occurring in silicalite were divided on the basis of a map recently devised by us, 39 which allows to identify the region ͑straight channel, zigzag channel or intersection͒ visited by the sorbate at a particular time. We mapped the position of the A-B center of mass ͑again for the TST crossings͒ whenever u ͉͉ changed sign.…”
Section: Resultsmentioning
confidence: 99%
“…This structural difference should be the main source of the different behavior observed in this particular process. In order to elucidate the influence of specific regions on the reaction the transitions occurring in silicalite were divided on the basis of a map recently devised by us, 39 which allows to identify the region ͑straight channel, zigzag channel or intersection͒ visited by the sorbate at a particular time. We mapped the position of the A-B center of mass ͑again for the TST crossings͒ whenever u ͉͉ changed sign.…”
Section: Resultsmentioning
confidence: 99%
“…This is connected to the high probability of two steps in opposite directions ͑negative correlation͒ already pointed out in our preceding articles. 15,16 This effect is more marked in the sinusoidal channel and ultimately leads to the typical relation…”
Section: Discussionmentioning
confidence: 97%
“…While in the standard random-walk model in silicalite 1 each event is a single displacement between two adjacent intersections ͑i.e., ͗x 2 ͘ seq in Eq. ͑1͒ is the square distance between adjacent intersections along the sinusoidal channel͒, the two-step expressions have been built considering all possible sequences of two single steps, 15 and the corresponding distance covered in each such sequence. As noted above the extension to the N-step model in silicalite is rather direct: it only requires the numbers of two-step events observed in the MD trajectory as well as the duration of single steps in both channels, i.e., data already available from our previous random-walk and twostep analysis.…”
Section: ͑1͒mentioning
confidence: 99%
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