Matches in SemOpenAlex for { <https://semopenalex.org/work/W4376109443> ?p ?o ?g. }
- W4376109443 endingPage "4612" @default.
- W4376109443 startingPage "4602" @default.
- W4376109443 abstract "The mechanism, kinetics, and potential of mean force of evaporation of water from aqueous NaCl solutions are investigated through both unbiased molecular dynamics simulations and also biased simulations using the umbrella sampling method. The results are obtained for aqueous solutions of three different NaCl concentrations ranging from 0.6 to 6.0 m and also for pure water. The rate of evaporation is found to decrease in the presence of ions. It is found that the process of evaporation of a surface water molecule from ionic solutions can be triggered through its collision with another water or chloride ion. Such collisions provide the additional kinetic energy that is required for evaporation. However, when the collision takes place with a Cl– ion, the evaporation of the escaping water also involves a collision with water in the vicinity of the ion at the same time along with the ion–water collision. These two collisions together provide the required kinetic energy for escape of the evaporating water molecule. Thus, the mechanism of evaporation process of ionic solutions can be more complex than that of pure water. The potential of mean force (PMF) of evaporation is found to be positive and it increases with increasing ion concentration. Also, no barrier in the PMF is found to be present for the condensation of water from vapor phase to the surfaces of the solutions. A detailed analysis of the unsuccessful evaporation attempts by surface water molecules is also made in the current study." @default.
- W4376109443 created "2023-05-12" @default.
- W4376109443 creator A5042680294 @default.
- W4376109443 creator A5055636861 @default.
- W4376109443 date "2023-05-10" @default.
- W4376109443 modified "2023-09-29" @default.
- W4376109443 title "Mechanism, Kinetics, and Potential of Mean Force of Evaporation of Water from Aqueous Sodium Chloride Solutions of Varying Concentrations" @default.
- W4376109443 cites W1031578623 @default.
- W4376109443 cites W1755836367 @default.
- W4376109443 cites W1967692121 @default.
- W4376109443 cites W1970684007 @default.
- W4376109443 cites W1971770271 @default.
- W4376109443 cites W1973636035 @default.
- W4376109443 cites W1973642368 @default.
- W4376109443 cites W1973702883 @default.
- W4376109443 cites W1974197525 @default.
- W4376109443 cites W1976519954 @default.
- W4376109443 cites W1978463979 @default.
- W4376109443 cites W1980460534 @default.
- W4376109443 cites W1984599229 @default.
- W4376109443 cites W1991535973 @default.
- W4376109443 cites W1991794210 @default.
- W4376109443 cites W1993177346 @default.
- W4376109443 cites W2002194503 @default.
- W4376109443 cites W2003949305 @default.
- W4376109443 cites W2004768750 @default.
- W4376109443 cites W2004865334 @default.
- W4376109443 cites W2007888691 @default.
- W4376109443 cites W2017196167 @default.
- W4376109443 cites W2018891840 @default.
- W4376109443 cites W2020782536 @default.
- W4376109443 cites W2028589415 @default.
- W4376109443 cites W2034079090 @default.
- W4376109443 cites W2034493678 @default.
- W4376109443 cites W2043328360 @default.
- W4376109443 cites W2044210110 @default.
- W4376109443 cites W2049475242 @default.
- W4376109443 cites W2051381895 @default.
- W4376109443 cites W2053541017 @default.
- W4376109443 cites W2054407224 @default.
- W4376109443 cites W2055046127 @default.
- W4376109443 cites W2055688669 @default.
- W4376109443 cites W2058125550 @default.
- W4376109443 cites W2058834481 @default.
- W4376109443 cites W2064495016 @default.
- W4376109443 cites W2065329899 @default.
- W4376109443 cites W2070186779 @default.
- W4376109443 cites W2073444462 @default.
- W4376109443 cites W2073801789 @default.
- W4376109443 cites W2074147084 @default.
- W4376109443 cites W2082654941 @default.
- W4376109443 cites W2091842006 @default.
- W4376109443 cites W2091996040 @default.
- W4376109443 cites W2093896112 @default.
- W4376109443 cites W2112154906 @default.
- W4376109443 cites W2142515841 @default.
- W4376109443 cites W2145637029 @default.
- W4376109443 cites W2173508500 @default.
- W4376109443 cites W2310291153 @default.
- W4376109443 cites W2314812999 @default.
- W4376109443 cites W2321646625 @default.
- W4376109443 cites W2444033913 @default.
- W4376109443 cites W2587247329 @default.
- W4376109443 cites W2771002776 @default.
- W4376109443 cites W2780561943 @default.
- W4376109443 cites W2782625983 @default.
- W4376109443 cites W2793328461 @default.
- W4376109443 cites W3017164564 @default.
- W4376109443 cites W3019168630 @default.
- W4376109443 cites W3046650622 @default.
- W4376109443 cites W3132033412 @default.
- W4376109443 cites W3169238715 @default.
- W4376109443 cites W4224232429 @default.
- W4376109443 cites W4240090431 @default.
- W4376109443 cites W4293215711 @default.
- W4376109443 cites W4296617388 @default.
- W4376109443 doi "https://doi.org/10.1021/acs.jpcb.2c09004" @default.
- W4376109443 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/37163726" @default.
- W4376109443 hasPublicationYear "2023" @default.
- W4376109443 type Work @default.
- W4376109443 citedByCount "0" @default.
- W4376109443 crossrefType "journal-article" @default.
- W4376109443 hasAuthorship W4376109443A5042680294 @default.
- W4376109443 hasAuthorship W4376109443A5055636861 @default.
- W4376109443 hasConcept C113196181 @default.
- W4376109443 hasConcept C121332964 @default.
- W4376109443 hasConcept C135889238 @default.
- W4376109443 hasConcept C145148216 @default.
- W4376109443 hasConcept C147597530 @default.
- W4376109443 hasConcept C147789679 @default.
- W4376109443 hasConcept C148898269 @default.
- W4376109443 hasConcept C159467904 @default.
- W4376109443 hasConcept C175634916 @default.
- W4376109443 hasConcept C178790620 @default.
- W4376109443 hasConcept C179104552 @default.
- W4376109443 hasConcept C184651966 @default.
- W4376109443 hasConcept C185592680 @default.
- W4376109443 hasConcept C200093464 @default.