EPR and Magnetic Properties of Heteronuclear Mn n Mg6- n (O2CNEt2)12: Impact of Structural Distortions on Mn(II) in Weak Ligand Fields
The reaction between Mn6L12 and Mg6L12 (L = N,N-diethylcarbamate) results in isolation of heteronuclear complexes Mn n Mg6 - n L12. A series was prepared with different doping factors n by varying the Mn/Mg ratio in the crystallization solutions. Single-crystal X-ray diffraction shows that MnMg5L12...
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Veröffentlicht in: | Inorganic chemistry 2004-01, Vol.43 (2), p.506-514 |
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description | The reaction between Mn6L12 and Mg6L12 (L = N,N-diethylcarbamate) results in isolation of heteronuclear complexes Mn n Mg6 - n L12. A series was prepared with different doping factors n by varying the Mn/Mg ratio in the crystallization solutions. Single-crystal X-ray diffraction shows that MnMg5L12 is isostructural with Mn6L12 and Mg6L12. Magnetic susceptibility data on the series Mn n Mg6 - n L12 (n = 1−6) are consistent with antiferromagnetic Mn···Mn interactions. At low n, the magnetic data demonstrate the formation of magnetically isolated Mn2+ centers. This was confirmed by measurement of the EPR spectrum at a doping factor n = 0.06 in solution, as a powder, and as single crystals. These show hyperfine interactions consistent with isolated Mn2+. The EPR spectrum of Mn0.06Mg5.94L12 exhibits a dominant signal at g eff = 4, and a wide series of less intense signals spanning 200−6000 G in the X-band regime. This unusual behavior in a weak-field Mn2+ complex is attributed to the substantial distortions from cubic ligand field geometry in this system. The g eff = 4 signals are attributed to a C 2-symmetric hexacoordinate Mn2+ ion with D > 0.3 cm-1 and E/D = 0.33. The wide series is assigned to an axial C 4 v pentacoordinate Mn2+ site with D = 0.05 cm-1. Comparison of the g eff = 4 signals to the g = 4.1 signals exhibited by the tetramanganese complex in photosystem II belies the fact that they almost certainly arise from different spin systems. In addition, the similarity of the spectrum of Mn n Mg6 - n L12 to mononuclear Mn4+ complexes suggests that considerable care must be exercised in the use of EPR as a fingerprint for the manganese oxidation state, particularly in manganese proteins where molecular composition may not be precisely established. |
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K ; Bafaro, Laura M ; LoBrutto, Russell ; Yee, Gordon T ; Groy, Thomas L</creator><creatorcontrib>Caudle, M. Tyler ; Mobley, Charles. K ; Bafaro, Laura M ; LoBrutto, Russell ; Yee, Gordon T ; Groy, Thomas L</creatorcontrib><description>The reaction between Mn6L12 and Mg6L12 (L = N,N-diethylcarbamate) results in isolation of heteronuclear complexes Mn n Mg6 - n L12. A series was prepared with different doping factors n by varying the Mn/Mg ratio in the crystallization solutions. Single-crystal X-ray diffraction shows that MnMg5L12 is isostructural with Mn6L12 and Mg6L12. Magnetic susceptibility data on the series Mn n Mg6 - n L12 (n = 1−6) are consistent with antiferromagnetic Mn···Mn interactions. At low n, the magnetic data demonstrate the formation of magnetically isolated Mn2+ centers. This was confirmed by measurement of the EPR spectrum at a doping factor n = 0.06 in solution, as a powder, and as single crystals. These show hyperfine interactions consistent with isolated Mn2+. The EPR spectrum of Mn0.06Mg5.94L12 exhibits a dominant signal at g eff = 4, and a wide series of less intense signals spanning 200−6000 G in the X-band regime. This unusual behavior in a weak-field Mn2+ complex is attributed to the substantial distortions from cubic ligand field geometry in this system. The g eff = 4 signals are attributed to a C 2-symmetric hexacoordinate Mn2+ ion with D > 0.3 cm-1 and E/D = 0.33. The wide series is assigned to an axial C 4 v pentacoordinate Mn2+ site with D = 0.05 cm-1. Comparison of the g eff = 4 signals to the g = 4.1 signals exhibited by the tetramanganese complex in photosystem II belies the fact that they almost certainly arise from different spin systems. In addition, the similarity of the spectrum of Mn n Mg6 - n L12 to mononuclear Mn4+ complexes suggests that considerable care must be exercised in the use of EPR as a fingerprint for the manganese oxidation state, particularly in manganese proteins where molecular composition may not be precisely established.</description><identifier>ISSN: 0020-1669</identifier><identifier>EISSN: 1520-510X</identifier><identifier>DOI: 10.1021/ic0349757</identifier><language>eng</language><publisher>American Chemical Society</publisher><ispartof>Inorganic chemistry, 2004-01, Vol.43 (2), p.506-514</ispartof><rights>Copyright © 2004 American Chemical Society</rights><lds50>peer_reviewed</lds50><woscitedreferencessubscribed>false</woscitedreferencessubscribed></display><links><openurl>$$Topenurl_article</openurl><openurlfulltext>$$Topenurlfull_article</openurlfulltext><thumbnail>$$Tsyndetics_thumb_exl</thumbnail><linktopdf>$$Uhttps://pubs.acs.org/doi/pdf/10.1021/ic0349757$$EPDF$$P50$$Gacs$$H</linktopdf><linktohtml>$$Uhttps://pubs.acs.org/doi/10.1021/ic0349757$$EHTML$$P50$$Gacs$$H</linktohtml><link.rule.ids>314,776,780,27053,27901,27902,56713,56763</link.rule.ids></links><search><creatorcontrib>Caudle, M. Tyler</creatorcontrib><creatorcontrib>Mobley, Charles. K</creatorcontrib><creatorcontrib>Bafaro, Laura M</creatorcontrib><creatorcontrib>LoBrutto, Russell</creatorcontrib><creatorcontrib>Yee, Gordon T</creatorcontrib><creatorcontrib>Groy, Thomas L</creatorcontrib><title>EPR and Magnetic Properties of Heteronuclear Mn n Mg6- n (O2CNEt2)12: Impact of Structural Distortions on Mn(II) in Weak Ligand Fields</title><title>Inorganic chemistry</title><addtitle>Inorg. Chem</addtitle><description>The reaction between Mn6L12 and Mg6L12 (L = N,N-diethylcarbamate) results in isolation of heteronuclear complexes Mn n Mg6 - n L12. A series was prepared with different doping factors n by varying the Mn/Mg ratio in the crystallization solutions. Single-crystal X-ray diffraction shows that MnMg5L12 is isostructural with Mn6L12 and Mg6L12. Magnetic susceptibility data on the series Mn n Mg6 - n L12 (n = 1−6) are consistent with antiferromagnetic Mn···Mn interactions. At low n, the magnetic data demonstrate the formation of magnetically isolated Mn2+ centers. This was confirmed by measurement of the EPR spectrum at a doping factor n = 0.06 in solution, as a powder, and as single crystals. These show hyperfine interactions consistent with isolated Mn2+. The EPR spectrum of Mn0.06Mg5.94L12 exhibits a dominant signal at g eff = 4, and a wide series of less intense signals spanning 200−6000 G in the X-band regime. This unusual behavior in a weak-field Mn2+ complex is attributed to the substantial distortions from cubic ligand field geometry in this system. The g eff = 4 signals are attributed to a C 2-symmetric hexacoordinate Mn2+ ion with D > 0.3 cm-1 and E/D = 0.33. The wide series is assigned to an axial C 4 v pentacoordinate Mn2+ site with D = 0.05 cm-1. Comparison of the g eff = 4 signals to the g = 4.1 signals exhibited by the tetramanganese complex in photosystem II belies the fact that they almost certainly arise from different spin systems. In addition, the similarity of the spectrum of Mn n Mg6 - n L12 to mononuclear Mn4+ complexes suggests that considerable care must be exercised in the use of EPR as a fingerprint for the manganese oxidation state, particularly in manganese proteins where molecular composition may not be precisely established.</description><issn>0020-1669</issn><issn>1520-510X</issn><fulltext>true</fulltext><rsrctype>article</rsrctype><creationdate>2004</creationdate><recordtype>article</recordtype><sourceid/><recordid>eNqNT8tKw0AUHUTB-Fj4B3cjtIvonUmTErc1pQGjRQXdhWF6G6bGmTIz2bvtb_olTkBcuzqHw3lwGLvieMNR8FutMJuV83x-xBKeC0xzju_HLEGMnBdFecrOvN8hYpnNioQdqvUzSLOBRnaGglawdnZPLmjyYLewokDOmkH1JB00Bgw0XZFGmDyJxWMVxJSLu--vA9Sfe6nCmHkJblBhcLKHe-2DjWXWxLYYNZO6noI28EbyAx50N04vNfUbf8FOtrL3dPmL5-x6Wb0uVqlUvt3ZwZmothzb8Wf79zP7r-8Hq0FVSw</recordid><startdate>20040126</startdate><enddate>20040126</enddate><creator>Caudle, M. Tyler</creator><creator>Mobley, Charles. K</creator><creator>Bafaro, Laura M</creator><creator>LoBrutto, Russell</creator><creator>Yee, Gordon T</creator><creator>Groy, Thomas L</creator><general>American Chemical Society</general><scope/></search><sort><creationdate>20040126</creationdate><title>EPR and Magnetic Properties of Heteronuclear Mn n Mg6- n (O2CNEt2)12: Impact of Structural Distortions on Mn(II) in Weak Ligand Fields</title><author>Caudle, M. Tyler ; Mobley, Charles. K ; Bafaro, Laura M ; LoBrutto, Russell ; Yee, Gordon T ; Groy, Thomas L</author></sort><facets><frbrtype>5</frbrtype><frbrgroupid>cdi_FETCH-acs_journals_10_1021_ic03497573</frbrgroupid><rsrctype>articles</rsrctype><prefilter>articles</prefilter><language>eng</language><creationdate>2004</creationdate><toplevel>peer_reviewed</toplevel><toplevel>online_resources</toplevel><creatorcontrib>Caudle, M. Tyler</creatorcontrib><creatorcontrib>Mobley, Charles. K</creatorcontrib><creatorcontrib>Bafaro, Laura M</creatorcontrib><creatorcontrib>LoBrutto, Russell</creatorcontrib><creatorcontrib>Yee, Gordon T</creatorcontrib><creatorcontrib>Groy, Thomas L</creatorcontrib><jtitle>Inorganic chemistry</jtitle></facets><delivery><delcategory>Remote Search Resource</delcategory><fulltext>fulltext</fulltext></delivery><addata><au>Caudle, M. Tyler</au><au>Mobley, Charles. K</au><au>Bafaro, Laura M</au><au>LoBrutto, Russell</au><au>Yee, Gordon T</au><au>Groy, Thomas L</au><format>journal</format><genre>article</genre><ristype>JOUR</ristype><atitle>EPR and Magnetic Properties of Heteronuclear Mn n Mg6- n (O2CNEt2)12: Impact of Structural Distortions on Mn(II) in Weak Ligand Fields</atitle><jtitle>Inorganic chemistry</jtitle><addtitle>Inorg. Chem</addtitle><date>2004-01-26</date><risdate>2004</risdate><volume>43</volume><issue>2</issue><spage>506</spage><epage>514</epage><pages>506-514</pages><issn>0020-1669</issn><eissn>1520-510X</eissn><abstract>The reaction between Mn6L12 and Mg6L12 (L = N,N-diethylcarbamate) results in isolation of heteronuclear complexes Mn n Mg6 - n L12. A series was prepared with different doping factors n by varying the Mn/Mg ratio in the crystallization solutions. Single-crystal X-ray diffraction shows that MnMg5L12 is isostructural with Mn6L12 and Mg6L12. Magnetic susceptibility data on the series Mn n Mg6 - n L12 (n = 1−6) are consistent with antiferromagnetic Mn···Mn interactions. At low n, the magnetic data demonstrate the formation of magnetically isolated Mn2+ centers. This was confirmed by measurement of the EPR spectrum at a doping factor n = 0.06 in solution, as a powder, and as single crystals. These show hyperfine interactions consistent with isolated Mn2+. The EPR spectrum of Mn0.06Mg5.94L12 exhibits a dominant signal at g eff = 4, and a wide series of less intense signals spanning 200−6000 G in the X-band regime. This unusual behavior in a weak-field Mn2+ complex is attributed to the substantial distortions from cubic ligand field geometry in this system. The g eff = 4 signals are attributed to a C 2-symmetric hexacoordinate Mn2+ ion with D > 0.3 cm-1 and E/D = 0.33. The wide series is assigned to an axial C 4 v pentacoordinate Mn2+ site with D = 0.05 cm-1. Comparison of the g eff = 4 signals to the g = 4.1 signals exhibited by the tetramanganese complex in photosystem II belies the fact that they almost certainly arise from different spin systems. In addition, the similarity of the spectrum of Mn n Mg6 - n L12 to mononuclear Mn4+ complexes suggests that considerable care must be exercised in the use of EPR as a fingerprint for the manganese oxidation state, particularly in manganese proteins where molecular composition may not be precisely established.</abstract><pub>American Chemical Society</pub><doi>10.1021/ic0349757</doi></addata></record> |
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title | EPR and Magnetic Properties of Heteronuclear Mn n Mg6- n (O2CNEt2)12: Impact of Structural Distortions on Mn(II) in Weak Ligand Fields |
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