2020
DOI: 10.1021/acs.langmuir.0c01457
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Slip Effects on Ionic Current of Viscoelectric Electroviscous Flows through Different Length Nanofluidic Channels

Abstract: Bu çalışma, bulanık mantık algoritması oluşturularak, örnek seçilen devlet hastanelerinin hasta bakım ve tedavi alanlarının tasarım verimliliklerine göre sınıflandırılması için yürütülmüştür. Hasta bakım ve tedavi ünitelerinin kat planlarından hasta kullanım alanları ve dolaşım alanları elde edilerek bulanık mantık modeli alt kümeleri için üyelik fonksiyonları oluşturulmuştur. Girdi değişkenleri olarak hasta kullanım alanları ve dolaşım alanları modellenmiştir. Girdi değişkenleri ile çıktı değişkeni olan tasar… Show more

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Cited by 11 publications
(9 citation statements)
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“…Part of the problem comes from the difficulty in obtaining suitable measurements able to inform theoretical developments [26][27][28][29] . Tracking the organisation and dynamics of individual ions at interfaces is highly challenging 7,17,[30][31][32][33][34] , especially when out of equilibrium or during electro-kinetic phenomena [35][36][37] . Computer simulations can capture ions' femto-to nanosecond dynamics 38,39 , but with current capabilities, most investigations are limited both in number of atoms and in their full duration, rarely going beyond hundreds of nanoseconds 38,40 .…”
mentioning
confidence: 99%
“…Part of the problem comes from the difficulty in obtaining suitable measurements able to inform theoretical developments [26][27][28][29] . Tracking the organisation and dynamics of individual ions at interfaces is highly challenging 7,17,[30][31][32][33][34] , especially when out of equilibrium or during electro-kinetic phenomena [35][36][37] . Computer simulations can capture ions' femto-to nanosecond dynamics 38,39 , but with current capabilities, most investigations are limited both in number of atoms and in their full duration, rarely going beyond hundreds of nanoseconds 38,40 .…”
mentioning
confidence: 99%
“…The viscoelectric effect concerns the change in the viscosity of polar liquids in the presence of an electric field ( 1 – 3 ). It arises from the interaction of the field with the dipolar molecules, and while its molecular origins are still not well understood ( 4 6 ), it has considerable relevance in areas ranging from surface potential measurements ( 7 9 ) and boundary lubrication ( 10 ) to nanofluidics and its applications ( 11 13 ). Knowing the magnitude of the viscoelectric effect is thus of clear importance.…”
mentioning
confidence: 99%
“…For the case of water, however, the most ubiquitous and important polar liquid, measurement of its viscosity in the presence of a strong, uniform field presents a strong challenge (as discussed later in this section), and to our knowledge no such direct measurements have been reported. Over the past six decades, therefore, the magnitude of the viscoelectric effect in water has been only indirectly estimated by extrapolation from its values for organic liquids ( 8 ), from estimates of its effect on electrokinetic phenomena ( 11 , 14 19 ), or by other approaches ( 7 , 12 , 20 , 21 ). These estimated values, as expressed in the viscoelectric coefficient f , vary over more than three orders of magnitude, ranging from f ∼10 −17 –2.5 × 10 −14 (V/m) 2 ( SI Appendix , Section 7 ).…”
mentioning
confidence: 99%
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