Thermodynamics of the Evaporation of Yttrium Triiodide in the Form of YI3 and Y2I6 Molecules
In this paper, we select the values of the molecular constants and calculate the thermodynamic functions for YI 3 and Y 2 I 6 based on a critical analysis of experimental and theoretical data on the structure and vibration frequencies of the monomeric and dimeric forms of yttrium triiodide molecules...
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Veröffentlicht in: | High temperature 2020-09, Vol.58 (5), p.694-698 |
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description | In this paper, we select the values of the molecular constants and calculate the thermodynamic functions for YI
3
and Y
2
I
6
based on a critical analysis of experimental and theoretical data on the structure and vibration frequencies of the monomeric and dimeric forms of yttrium triiodide molecules. Using the literature data on the ratio of the partial pressures of dimeric and monomeric molecules and the third law of thermodynamics, we determine the enthalpy of YI
3
(cr., l) + YI
3
(g) = Y
2
I
6
(g) reaction and calculate the composition of the yttrium iodide vapor in the temperature range of 800–961 K, for which there are literature data on the total pressure. In the considered temperature range,
P
d
/
P
m
pressure ratio is found to increase from 0.003 to 0.014. The partial pressures determined are used to calculate the sublimation enthalpies of yttrium triiodide in the form of monomeric and dimeric molecules and the enthalpies of formation of these molecules. The obtained values have been entered into the database of the IVTANTERMO software package. |
doi_str_mv | 10.1134/S0018151X20050065 |
format | Article |
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3
and Y
2
I
6
based on a critical analysis of experimental and theoretical data on the structure and vibration frequencies of the monomeric and dimeric forms of yttrium triiodide molecules. Using the literature data on the ratio of the partial pressures of dimeric and monomeric molecules and the third law of thermodynamics, we determine the enthalpy of YI
3
(cr., l) + YI
3
(g) = Y
2
I
6
(g) reaction and calculate the composition of the yttrium iodide vapor in the temperature range of 800–961 K, for which there are literature data on the total pressure. In the considered temperature range,
P
d
/
P
m
pressure ratio is found to increase from 0.003 to 0.014. The partial pressures determined are used to calculate the sublimation enthalpies of yttrium triiodide in the form of monomeric and dimeric molecules and the enthalpies of formation of these molecules. The obtained values have been entered into the database of the IVTANTERMO software package.</description><identifier>ISSN: 0018-151X</identifier><identifier>EISSN: 1608-3156</identifier><identifier>DOI: 10.1134/S0018151X20050065</identifier><language>eng</language><publisher>Moscow: Pleiades Publishing</publisher><subject>Atoms and Molecules in Strong Fields ; Classical and Continuum Physics ; Industrial Chemistry/Chemical Engineering ; Laser Matter Interaction ; Materials Science ; Physical Chemistry ; Physics ; Physics and Astronomy ; Thermophysical Properties of Materials</subject><ispartof>High temperature, 2020-09, Vol.58 (5), p.694-698</ispartof><rights>Pleiades Publishing, Ltd. 2020. ISSN 0018-151X, High Temperature, 2020, Vol. 58, No. 5, pp. 694–698. © Pleiades Publishing, Ltd., 2020. Russian Text © The Author(s), 2020, published in Teplofizika Vysokikh Temperatur, 2020, Vol. 58, No. 5, pp. 764–769.</rights><lds50>peer_reviewed</lds50><woscitedreferencessubscribed>false</woscitedreferencessubscribed><citedby>FETCH-LOGICAL-c288t-4717b649be53ba4e03f9df2d95355f39912835a9f70340264608cf81a7dbc3d3</citedby><cites>FETCH-LOGICAL-c288t-4717b649be53ba4e03f9df2d95355f39912835a9f70340264608cf81a7dbc3d3</cites></display><links><openurl>$$Topenurl_article</openurl><openurlfulltext>$$Topenurlfull_article</openurlfulltext><thumbnail>$$Tsyndetics_thumb_exl</thumbnail><linktopdf>$$Uhttps://link.springer.com/content/pdf/10.1134/S0018151X20050065$$EPDF$$P50$$Gspringer$$H</linktopdf><linktohtml>$$Uhttps://link.springer.com/10.1134/S0018151X20050065$$EHTML$$P50$$Gspringer$$H</linktohtml><link.rule.ids>314,780,784,27924,27925,41488,42557,51319</link.rule.ids></links><search><creatorcontrib>Osina, E. L.</creatorcontrib><creatorcontrib>Gorokhov, L. N.</creatorcontrib><creatorcontrib>Osin, S. B.</creatorcontrib><title>Thermodynamics of the Evaporation of Yttrium Triiodide in the Form of YI3 and Y2I6 Molecules</title><title>High temperature</title><addtitle>High Temp</addtitle><description>In this paper, we select the values of the molecular constants and calculate the thermodynamic functions for YI
3
and Y
2
I
6
based on a critical analysis of experimental and theoretical data on the structure and vibration frequencies of the monomeric and dimeric forms of yttrium triiodide molecules. Using the literature data on the ratio of the partial pressures of dimeric and monomeric molecules and the third law of thermodynamics, we determine the enthalpy of YI
3
(cr., l) + YI
3
(g) = Y
2
I
6
(g) reaction and calculate the composition of the yttrium iodide vapor in the temperature range of 800–961 K, for which there are literature data on the total pressure. In the considered temperature range,
P
d
/
P
m
pressure ratio is found to increase from 0.003 to 0.014. The partial pressures determined are used to calculate the sublimation enthalpies of yttrium triiodide in the form of monomeric and dimeric molecules and the enthalpies of formation of these molecules. The obtained values have been entered into the database of the IVTANTERMO software package.</description><subject>Atoms and Molecules in Strong Fields</subject><subject>Classical and Continuum Physics</subject><subject>Industrial Chemistry/Chemical Engineering</subject><subject>Laser Matter Interaction</subject><subject>Materials Science</subject><subject>Physical Chemistry</subject><subject>Physics</subject><subject>Physics and Astronomy</subject><subject>Thermophysical Properties of Materials</subject><issn>0018-151X</issn><issn>1608-3156</issn><fulltext>true</fulltext><rsrctype>article</rsrctype><creationdate>2020</creationdate><recordtype>article</recordtype><recordid>eNp9kF9LwzAUxYMoWKcfwLd8geq9SdM_jzI2HUx8sA8OhJI2ictom5F0wr697eab4NOFe37ncs8h5B7hAZEnj-8AmKPADwYgAFJxQSJMIY85ivSSRJMcT_o1uQlhByMlGI_IZ7nVvnPq2MvONoE6Q4etpotvuXdeDtb102ozDN4eOlp6a52ySlPbn7il890JWHEqe0U3bJXSV9fq5tDqcEuujGyDvvudM1IuF-X8JV6_Pa_mT-u4YXk-xEmGWZ0mRa0Fr2WigZtCGaYKwYUwvCiQ5VzIwmTAE2BpMuZqTI4yU3XDFZ8RPJ9tvAvBa1Ptve2kP1YI1dRO9aed0cPOnjCy_Zf21c4dfD9--Y_pB3R6ZaM</recordid><startdate>20200901</startdate><enddate>20200901</enddate><creator>Osina, E. L.</creator><creator>Gorokhov, L. N.</creator><creator>Osin, S. B.</creator><general>Pleiades Publishing</general><scope>AAYXX</scope><scope>CITATION</scope></search><sort><creationdate>20200901</creationdate><title>Thermodynamics of the Evaporation of Yttrium Triiodide in the Form of YI3 and Y2I6 Molecules</title><author>Osina, E. L. ; Gorokhov, L. N. ; Osin, S. B.</author></sort><facets><frbrtype>5</frbrtype><frbrgroupid>cdi_FETCH-LOGICAL-c288t-4717b649be53ba4e03f9df2d95355f39912835a9f70340264608cf81a7dbc3d3</frbrgroupid><rsrctype>articles</rsrctype><prefilter>articles</prefilter><language>eng</language><creationdate>2020</creationdate><topic>Atoms and Molecules in Strong Fields</topic><topic>Classical and Continuum Physics</topic><topic>Industrial Chemistry/Chemical Engineering</topic><topic>Laser Matter Interaction</topic><topic>Materials Science</topic><topic>Physical Chemistry</topic><topic>Physics</topic><topic>Physics and Astronomy</topic><topic>Thermophysical Properties of Materials</topic><toplevel>peer_reviewed</toplevel><toplevel>online_resources</toplevel><creatorcontrib>Osina, E. L.</creatorcontrib><creatorcontrib>Gorokhov, L. N.</creatorcontrib><creatorcontrib>Osin, S. B.</creatorcontrib><collection>CrossRef</collection><jtitle>High temperature</jtitle></facets><delivery><delcategory>Remote Search Resource</delcategory><fulltext>fulltext</fulltext></delivery><addata><au>Osina, E. L.</au><au>Gorokhov, L. N.</au><au>Osin, S. B.</au><format>journal</format><genre>article</genre><ristype>JOUR</ristype><atitle>Thermodynamics of the Evaporation of Yttrium Triiodide in the Form of YI3 and Y2I6 Molecules</atitle><jtitle>High temperature</jtitle><stitle>High Temp</stitle><date>2020-09-01</date><risdate>2020</risdate><volume>58</volume><issue>5</issue><spage>694</spage><epage>698</epage><pages>694-698</pages><issn>0018-151X</issn><eissn>1608-3156</eissn><abstract>In this paper, we select the values of the molecular constants and calculate the thermodynamic functions for YI
3
and Y
2
I
6
based on a critical analysis of experimental and theoretical data on the structure and vibration frequencies of the monomeric and dimeric forms of yttrium triiodide molecules. Using the literature data on the ratio of the partial pressures of dimeric and monomeric molecules and the third law of thermodynamics, we determine the enthalpy of YI
3
(cr., l) + YI
3
(g) = Y
2
I
6
(g) reaction and calculate the composition of the yttrium iodide vapor in the temperature range of 800–961 K, for which there are literature data on the total pressure. In the considered temperature range,
P
d
/
P
m
pressure ratio is found to increase from 0.003 to 0.014. The partial pressures determined are used to calculate the sublimation enthalpies of yttrium triiodide in the form of monomeric and dimeric molecules and the enthalpies of formation of these molecules. The obtained values have been entered into the database of the IVTANTERMO software package.</abstract><cop>Moscow</cop><pub>Pleiades Publishing</pub><doi>10.1134/S0018151X20050065</doi><tpages>5</tpages></addata></record> |
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language | eng |
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source | SpringerNature Journals |
subjects | Atoms and Molecules in Strong Fields Classical and Continuum Physics Industrial Chemistry/Chemical Engineering Laser Matter Interaction Materials Science Physical Chemistry Physics Physics and Astronomy Thermophysical Properties of Materials |
title | Thermodynamics of the Evaporation of Yttrium Triiodide in the Form of YI3 and Y2I6 Molecules |
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