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Synthesis, spectral and thermal studies of monomeric, homobimetallic and polymeric complexes containing benzoyldithiocarbazate

New mixed ligand complexes of benzoyldithiocarbazate (H^sub 2^BDT) have been synthesized and characterized by elemental analyses, spectral studies (i.r., u.v.-vis., mass), thermal analysis and electrical conductivity measurements. The complexes have the general formulae: [M^sub 2^(BDT)(OX)^sub 2^] ·...

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Published in:Transition metal chemistry (Weinheim) 2003-10, Vol.28 (7), p.749
Main Author: El-said, Asma I
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description New mixed ligand complexes of benzoyldithiocarbazate (H^sub 2^BDT) have been synthesized and characterized by elemental analyses, spectral studies (i.r., u.v.-vis., mass), thermal analysis and electrical conductivity measurements. The complexes have the general formulae: [M^sub 2^(BDT)(OX)^sub 2^] · xH^sub 2^O; [Co^sub 2^(BDT)(OX)^sub 2^(H^sub 2^O)^sub 4^]; [M'(HBDT)(OX)-(H^sub 2^O)], [Ni(BDT)(py)^sub 2^]^sub n^ and [Ni(BDT)(L)]^sub n^ where M = Mn^sup II^, Ni^sup II^ and Cu^sup II^; BDT = dithiocarbazate dianion; OX = 8-hydroxyquinolinate; x = 1 or 2; M' = Zn^sup II^ or Cd^sup II^; HBDT = dithiocarbazate anion and L = 2,2'-bipyridyl or 1,10-o-phenanthroline. For the [M^sub 2^(BDT)(OX)^sub 2^] · xH^sub 2^O, [Co^sub 2^(BDT)(OX)^sub 2^(H^sub 2^O)^sub 4^], [Ni(BDT)(py)^sub 2^]^sub n^ and [Ni(BDT)(L)]^sub n^ complexes, benzoyldithiocarbazate acts as a dibasic-tetradentate ligand in the enol form via the enolic oxygen, the hydrazide nitrogens and the thiolate sulphur, while it acts as a monobasic-tridentate ligand in the keto form in the [M'(HBDT)(OX)(H^sub 2^O)] complexes. The thermal behaviour of the complexes has been studied by t.g.-d.t.g. techniques. Kinetic parameters of the thermal decomposition process have been computed by Coats-Redfern and Horowitz-Metzger methods. It is obvious that the thermal decomposition in the complexes occurs directly at the metal-ligand bonds except for the Zn^sup II^ and Cd^sup II^ complexes in which decomposition seems to be at a point in the benzoyldithiocarbazate moiety. From the calculated kinetic data it can be concluded that the dehydration processes in all complexes have been described as phase-boundary controlled reactions. The activation energy values reveal that the thermal stabilities of the homobimetallic complexes lie in the order: Mn^sup II^ < Ni^sup II^ < Co^sup II^, while the monomeric Cd^sup II^ complex has more enhanced thermal stability than the Zn^sup II^ complex.[PUBLICATION ABSTRACT]
doi_str_mv 10.1023/A:1026074223926
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The complexes have the general formulae: [M^sub 2^(BDT)(OX)^sub 2^] · xH^sub 2^O; [Co^sub 2^(BDT)(OX)^sub 2^(H^sub 2^O)^sub 4^]; [M'(HBDT)(OX)-(H^sub 2^O)], [Ni(BDT)(py)^sub 2^]^sub n^ and [Ni(BDT)(L)]^sub n^ where M = Mn^sup II^, Ni^sup II^ and Cu^sup II^; BDT = dithiocarbazate dianion; OX = 8-hydroxyquinolinate; x = 1 or 2; M' = Zn^sup II^ or Cd^sup II^; HBDT = dithiocarbazate anion and L = 2,2'-bipyridyl or 1,10-o-phenanthroline. For the [M^sub 2^(BDT)(OX)^sub 2^] · xH^sub 2^O, [Co^sub 2^(BDT)(OX)^sub 2^(H^sub 2^O)^sub 4^], [Ni(BDT)(py)^sub 2^]^sub n^ and [Ni(BDT)(L)]^sub n^ complexes, benzoyldithiocarbazate acts as a dibasic-tetradentate ligand in the enol form via the enolic oxygen, the hydrazide nitrogens and the thiolate sulphur, while it acts as a monobasic-tridentate ligand in the keto form in the [M'(HBDT)(OX)(H^sub 2^O)] complexes. The thermal behaviour of the complexes has been studied by t.g.-d.t.g. techniques. Kinetic parameters of the thermal decomposition process have been computed by Coats-Redfern and Horowitz-Metzger methods. It is obvious that the thermal decomposition in the complexes occurs directly at the metal-ligand bonds except for the Zn^sup II^ and Cd^sup II^ complexes in which decomposition seems to be at a point in the benzoyldithiocarbazate moiety. From the calculated kinetic data it can be concluded that the dehydration processes in all complexes have been described as phase-boundary controlled reactions. The activation energy values reveal that the thermal stabilities of the homobimetallic complexes lie in the order: Mn^sup II^ &lt; Ni^sup II^ &lt; Co^sup II^, while the monomeric Cd^sup II^ complex has more enhanced thermal stability than the Zn^sup II^ complex.[PUBLICATION ABSTRACT]</description><identifier>ISSN: 0340-4285</identifier><identifier>EISSN: 1572-901X</identifier><identifier>DOI: 10.1023/A:1026074223926</identifier><language>eng</language><publisher>Dordrecht: Springer Nature B.V</publisher><subject>Decomposition</subject><ispartof>Transition metal chemistry (Weinheim), 2003-10, Vol.28 (7), p.749</ispartof><rights>Kluwer Academic Publishers 2003</rights><lds50>peer_reviewed</lds50><woscitedreferencessubscribed>false</woscitedreferencessubscribed><citedby>FETCH-LOGICAL-c226t-2bc5ca1141f6741ee1a488841dcf2df68362984a4c478f8c74dd258dfd09ad693</citedby></display><links><openurl>$$Topenurl_article</openurl><openurlfulltext>$$Topenurlfull_article</openurlfulltext><thumbnail>$$Tsyndetics_thumb_exl</thumbnail><link.rule.ids>314,776,780,27903,27904</link.rule.ids></links><search><creatorcontrib>El-said, Asma I</creatorcontrib><title>Synthesis, spectral and thermal studies of monomeric, homobimetallic and polymeric complexes containing benzoyldithiocarbazate</title><title>Transition metal chemistry (Weinheim)</title><description>New mixed ligand complexes of benzoyldithiocarbazate (H^sub 2^BDT) have been synthesized and characterized by elemental analyses, spectral studies (i.r., u.v.-vis., mass), thermal analysis and electrical conductivity measurements. The complexes have the general formulae: [M^sub 2^(BDT)(OX)^sub 2^] · xH^sub 2^O; [Co^sub 2^(BDT)(OX)^sub 2^(H^sub 2^O)^sub 4^]; [M'(HBDT)(OX)-(H^sub 2^O)], [Ni(BDT)(py)^sub 2^]^sub n^ and [Ni(BDT)(L)]^sub n^ where M = Mn^sup II^, Ni^sup II^ and Cu^sup II^; BDT = dithiocarbazate dianion; OX = 8-hydroxyquinolinate; x = 1 or 2; M' = Zn^sup II^ or Cd^sup II^; HBDT = dithiocarbazate anion and L = 2,2'-bipyridyl or 1,10-o-phenanthroline. For the [M^sub 2^(BDT)(OX)^sub 2^] · xH^sub 2^O, [Co^sub 2^(BDT)(OX)^sub 2^(H^sub 2^O)^sub 4^], [Ni(BDT)(py)^sub 2^]^sub n^ and [Ni(BDT)(L)]^sub n^ complexes, benzoyldithiocarbazate acts as a dibasic-tetradentate ligand in the enol form via the enolic oxygen, the hydrazide nitrogens and the thiolate sulphur, while it acts as a monobasic-tridentate ligand in the keto form in the [M'(HBDT)(OX)(H^sub 2^O)] complexes. The thermal behaviour of the complexes has been studied by t.g.-d.t.g. techniques. Kinetic parameters of the thermal decomposition process have been computed by Coats-Redfern and Horowitz-Metzger methods. It is obvious that the thermal decomposition in the complexes occurs directly at the metal-ligand bonds except for the Zn^sup II^ and Cd^sup II^ complexes in which decomposition seems to be at a point in the benzoyldithiocarbazate moiety. From the calculated kinetic data it can be concluded that the dehydration processes in all complexes have been described as phase-boundary controlled reactions. The activation energy values reveal that the thermal stabilities of the homobimetallic complexes lie in the order: Mn^sup II^ &lt; Ni^sup II^ &lt; Co^sup II^, while the monomeric Cd^sup II^ complex has more enhanced thermal stability than the Zn^sup II^ complex.[PUBLICATION ABSTRACT]</description><subject>Decomposition</subject><issn>0340-4285</issn><issn>1572-901X</issn><fulltext>true</fulltext><rsrctype>article</rsrctype><creationdate>2003</creationdate><recordtype>article</recordtype><recordid>eNotUMtKAzEADKJgrZ69Bs9dzWuzWW-lWBUKHlTwVrJ52JRssm5SsD347YbqaYYZZgYGgGuMbjEi9G5-X4CjhhFCW8JPwATXDalahD9OwQRRhipGRH0OLlLaIoRq0rAJ-Hndh7wxyaUZTINReZQeyqBhEce-8JR32pkEo4V9DLE3o1MzuIl97FxvsvTeqWNgiH5_dKGK_eDNdwmpGLJ0wYVP2JlwiHuvXd64qOTYyYPM5hKcWemTufrHKXhfPrwtnqrVy-PzYr6qFCE8V6RTtZIYM2x5w7AxWDIhBMNaWaItF5STVjDJFGuEFaphWpNaaKtRKzVv6RTc_PUOY_zamZTX27gbQ5lcl5pyRksF_QXzeWPN</recordid><startdate>20031001</startdate><enddate>20031001</enddate><creator>El-said, Asma I</creator><general>Springer Nature B.V</general><scope>8BQ</scope><scope>8FD</scope><scope>JG9</scope></search><sort><creationdate>20031001</creationdate><title>Synthesis, spectral and thermal studies of monomeric, homobimetallic and polymeric complexes containing benzoyldithiocarbazate</title><author>El-said, Asma I</author></sort><facets><frbrtype>5</frbrtype><frbrgroupid>cdi_FETCH-LOGICAL-c226t-2bc5ca1141f6741ee1a488841dcf2df68362984a4c478f8c74dd258dfd09ad693</frbrgroupid><rsrctype>articles</rsrctype><prefilter>articles</prefilter><language>eng</language><creationdate>2003</creationdate><topic>Decomposition</topic><toplevel>peer_reviewed</toplevel><toplevel>online_resources</toplevel><creatorcontrib>El-said, Asma I</creatorcontrib><collection>METADEX</collection><collection>Technology Research Database</collection><collection>Materials Research Database</collection><jtitle>Transition metal chemistry (Weinheim)</jtitle></facets><delivery><delcategory>Remote Search Resource</delcategory><fulltext>fulltext</fulltext></delivery><addata><au>El-said, Asma I</au><format>journal</format><genre>article</genre><ristype>JOUR</ristype><atitle>Synthesis, spectral and thermal studies of monomeric, homobimetallic and polymeric complexes containing benzoyldithiocarbazate</atitle><jtitle>Transition metal chemistry (Weinheim)</jtitle><date>2003-10-01</date><risdate>2003</risdate><volume>28</volume><issue>7</issue><spage>749</spage><pages>749-</pages><issn>0340-4285</issn><eissn>1572-901X</eissn><abstract>New mixed ligand complexes of benzoyldithiocarbazate (H^sub 2^BDT) have been synthesized and characterized by elemental analyses, spectral studies (i.r., u.v.-vis., mass), thermal analysis and electrical conductivity measurements. The complexes have the general formulae: [M^sub 2^(BDT)(OX)^sub 2^] · xH^sub 2^O; [Co^sub 2^(BDT)(OX)^sub 2^(H^sub 2^O)^sub 4^]; [M'(HBDT)(OX)-(H^sub 2^O)], [Ni(BDT)(py)^sub 2^]^sub n^ and [Ni(BDT)(L)]^sub n^ where M = Mn^sup II^, Ni^sup II^ and Cu^sup II^; BDT = dithiocarbazate dianion; OX = 8-hydroxyquinolinate; x = 1 or 2; M' = Zn^sup II^ or Cd^sup II^; HBDT = dithiocarbazate anion and L = 2,2'-bipyridyl or 1,10-o-phenanthroline. For the [M^sub 2^(BDT)(OX)^sub 2^] · xH^sub 2^O, [Co^sub 2^(BDT)(OX)^sub 2^(H^sub 2^O)^sub 4^], [Ni(BDT)(py)^sub 2^]^sub n^ and [Ni(BDT)(L)]^sub n^ complexes, benzoyldithiocarbazate acts as a dibasic-tetradentate ligand in the enol form via the enolic oxygen, the hydrazide nitrogens and the thiolate sulphur, while it acts as a monobasic-tridentate ligand in the keto form in the [M'(HBDT)(OX)(H^sub 2^O)] complexes. The thermal behaviour of the complexes has been studied by t.g.-d.t.g. techniques. Kinetic parameters of the thermal decomposition process have been computed by Coats-Redfern and Horowitz-Metzger methods. It is obvious that the thermal decomposition in the complexes occurs directly at the metal-ligand bonds except for the Zn^sup II^ and Cd^sup II^ complexes in which decomposition seems to be at a point in the benzoyldithiocarbazate moiety. From the calculated kinetic data it can be concluded that the dehydration processes in all complexes have been described as phase-boundary controlled reactions. The activation energy values reveal that the thermal stabilities of the homobimetallic complexes lie in the order: Mn^sup II^ &lt; Ni^sup II^ &lt; Co^sup II^, while the monomeric Cd^sup II^ complex has more enhanced thermal stability than the Zn^sup II^ complex.[PUBLICATION ABSTRACT]</abstract><cop>Dordrecht</cop><pub>Springer Nature B.V</pub><doi>10.1023/A:1026074223926</doi></addata></record>
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title Synthesis, spectral and thermal studies of monomeric, homobimetallic and polymeric complexes containing benzoyldithiocarbazate
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