Structures by: Holm R. H.

Total: 375

(Et4N)[11]*CH3CN

C29H50N2.5OS5W

Stanislav GroysmanR. H. Holm

Inorganic Chemistry (2007) 46, 4090-4102

a=11.0113(6)Å   b=11.8192(6)Å   c=14.8440(8)Å

α=74.0060(10)°   β=88.7280(10)°   γ=70.2530(10)°

20

C38H58S6W

Stanislav GroysmanR. H. Holm

Inorganic Chemistry (2007) 46, 4090-4102

a=10.5460(18)Å   b=14.131(2)Å   c=14.663(3)Å

α=96.490(4)°   β=94.872(3)°   γ=102.656(3)°

[Pd(pmdt)SH](Et4N)

C15H28N2PdS3

Deguang HuangLiang DengJibin SunR. H. Holm

Inorganic Chemistry (2009) 48, 6159-6166

a=11.9250(19)Å   b=12.822(2)Å   c=12.559(2)Å

α=90.00°   β=92.653(2)°   γ=90.00°

[Ni(pmdt)SH](Et4N)

C15H28N2NiS3

Deguang HuangLiang DengJibin SunR. H. Holm

Inorganic Chemistry (2009) 48, 6159-6166

a=11.7986(11)Å   b=12.8736(13)Å   c=12.4747(12)Å

α=90.00°   β=92.029(2)°   γ=90.00°

[Ni(pdtc)Br](Bu4N)

C16H36N,C7H3BrNNiO2S2

Deguang HuangLiang DengJibin SunR. H. Holm

Inorganic Chemistry (2009) 48, 6159-6166

a=13.5520(10)Å   b=22.8926(17)Å   c=9.2961(7)Å

α=90.00°   β=111.4640(10)°   γ=90.00°

[Ni(pdtc)OSiMe3] (Et4N)

C10H12NNiO3S2Si,C8H20N

Deguang HuangLiang DengJibin SunR. H. Holm

Inorganic Chemistry (2009) 48, 6159-6166

a=8.9067(5)Å   b=8.9772(5)Å   c=15.2903(9)Å

α=86.703(4)°   β=76.782(4)°   γ=85.129(4)°

[Ni(pdtc)SH](Et4N)

C8H20N,C7H4NNiO2S3

Deguang HuangLiang DengJibin SunR. H. Holm

Inorganic Chemistry (2009) 48, 6159-6166

a=6.9662(7)Å   b=21.928(2)Å   c=12.2704(12)Å

α=90.00°   β=100.0840(10)°   γ=90.00°

{[Ni(pdtc)]2[Ni(pdtc)(DMF)3]}.DMF

C30H30N6Ni3O9S6,C3H7NO

Deguang HuangLiang DengJibin SunR. H. Holm

Inorganic Chemistry (2009) 48, 6159-6166

a=46.973(4)Å   b=12.4049(10)Å   c=15.3375(12)Å

α=90.00°   β=96.9120(10)°   γ=90.00°

[Ni(pdtc)CH2CN](Et4N)

C8H20N,C9H5N2NiO2S2

Deguang HuangLiang DengJibin SunR. H. Holm

Inorganic Chemistry (2009) 48, 6159-6166

a=11.8120(16)Å   b=13.7938(19)Å   c=13.0192(18)Å

α=90.00°   β=111.730(2)°   γ=90.00°

{[Ni(pdtc)]3S} (Et4N)2 .CH2Cl2

C21H9N3Ni3O6S7,2(C8H20N),CH2Cl2

Deguang HuangLiang DengJibin SunR. H. Holm

Inorganic Chemistry (2009) 48, 6159-6166

a=11.4090(11)Å   b=12.3710(11)Å   c=17.7857(17)Å

α=93.198(2)°   β=99.185(2)°   γ=104.338(2)°

{[Ni(pdtc)]SEt[Ni(pdtc)]}(Et4N)(CH2Cl2)

C16H11N2Ni2O4S5,C8H20N,CH2Cl2

Deguang HuangLiang DengJibin SunR. H. Holm

Inorganic Chemistry (2009) 48, 6159-6166

a=9.7843(12)Å   b=13.4937(17)Å   c=13.7498(18)Å

α=77.248(2)°   β=70.317(2)°   γ=79.757(2)°

[Ni(pdtc)-CN-Fe(Me6-tren)](CF3SO3)(CH2Cl2)

C20H33FeN6NiO2S2,CH2Cl2,CF3O3S

Deguang HuangLiang DengJibin SunR. H. Holm

Inorganic Chemistry (2009) 48, 6159-6166

a=9.3583(9)Å   b=12.8007(12)Å   c=14.5878(13)Å

α=94.966(2)°   β=94.132(2)°   γ=97.477(2)°

[Ni(pdtc)-carbene](0.25THF)

4(C18H23N3NiO2S2),C4H8O

Deguang HuangLiang DengJibin SunR. H. Holm

Inorganic Chemistry (2009) 48, 6159-6166

a=23.4680(4)Å   b=26.3561(4)Å   c=14.0373(2)Å

α=90.00°   β=99.7140(10)°   γ=90.00°

[Mo(S2C2Me2)3]

C12H18MoS6

Booyong S. LimJames P. DonahueR. H. Holm

Inorganic Chemistry (2000) 39, 263-273

a=7.0301(3)Å   b=8.9791(3)Å   c=14.8274(5)Å

α=83.99°   β=81.602(2)°   γ=72.108(2)°

[{(Meida)MoFe3S4(PCy3)3}4Fe2(mu-Cl)(CH3CN)2](BPh4)3.2CH3CN

C316H496B3ClFe14Mo4N8O16P12S16

Frank OsterlohBrent M. SegalCatalina AchimR. H. Holm

Inorganic Chemistry (2000) 39, 980-989

a=32.9623(3)Å   b=32.9623(3)Å   c=35.6578(4)Å

α=90.00°   β=90.00°   γ=90.00°

[(Cl4cat)MoFe3S4(PBut3)3(CH3CN)].3CH2Cl2

C47H90Cl10Fe3MoNO2P3S4

Frank OsterlohBrent M. SegalCatalina AchimR. H. Holm

Inorganic Chemistry (2000) 39, 980-989

a=13.545(3)Å   b=22.339(5)Å   c=23.070(5)Å

α=90.00°   β=106.45(3)°   γ=90.00°

[Mo(S2C2Me2)3](Et4N)(MeCN)

C22H41MoN2S6

Booyong S. LimJames P. DonahueR. H. Holm

Inorganic Chemistry (2000) 39, 263-273

a=9.6185(14)Å   b=24.159(3)Å   c=13.256(2)Å

α=90.00°   β=105.347(12)°   γ=90.00°

[Mo(CO)(SePh)(S2C2Me2)2](Bu4N)

C31H53MoNOS4Se

Booyong S. LimJames P. DonahueR. H. Holm

Inorganic Chemistry (2000) 39, 263-273

a=9.476(3)Å   b=19.967(4)Å   c=19.285(6)Å

α=90.00°   β=97.75(3)°   γ=90.00°

[MoO(S2C2Me2)2](Et4N)2

C24H52MoN2OS4

Booyong S. LimJames P. DonahueR. H. Holm

Inorganic Chemistry (2000) 39, 263-273

a=13.1097(10)Å   b=13.9789(15)Å   c=16.6940(14)Å

α=90.00°   β=94.558(7)°   γ=90.00°

[Mo(CO)(S2C2Me2)2](Bu4N)

C31H53MoNOS5

Booyong S. LimJames P. DonahueR. H. Holm

Inorganic Chemistry (2000) 39, 263-273

a=9.5576(12)Å   b=19.684(2)Å   c=19.248(2)Å

α=90.00°   β=98.081(7)°   γ=90.00°

[Mo(CO)(SeC6H2-2,4,6-Pri3)(S2C2Me2)2](Et4N)

C32H55MoNOS4Se

Booyong S. LimJames P. DonahueR. H. Holm

Inorganic Chemistry (2000) 39, 263-273

a=25.5665(7)Å   b=16.8041(5)Å   c=17.1866(5)Å

α=90.00°   β=90.00°   γ=90.00°

[Mo(OC6H3-2,6-Pri2)(S2C2Me2)2](Et4N)

C28H49MoNOS4

Booyong S. LimJames P. DonahueR. H. Holm

Inorganic Chemistry (2000) 39, 263-273

a=18.334(2)Å   b=19.919(3)Å   c=17.809(2)Å

α=90.00°   β=90.099(3)°   γ=90.00°

[Mo(CO)2(S2C2Me2)2]

C10H12MoO2S4

Booyong S. LimJames P. DonahueR. H. Holm

Inorganic Chemistry (2000) 39, 263-273

a=7.0975(2)Å   b=7.7209(2)Å   c=13.7181(3)Å

α=93.5860(10)°   β=94.1230(10)°   γ=95.5510(10)°

[Mo2(??S)2(S2C2Me2)4](PPh4)2(2DMF)

C70H78Mo2N2O2P2S10

Booyong S. LimJames P. DonahueR. H. Holm

Inorganic Chemistry (2000) 39, 263-273

a=14.9620(3)Å   b=16.0040(3)Å   c=15.915Å

α=90.00°   β=107.9420(10)°   γ=90.00°

[Mo(SC6H2-2,4,6-Pri3)(S2C2Ph2)2](Et4N)

C51H63MoNS5

Booyong S. LimJames P. DonahueR. H. Holm

Inorganic Chemistry (2000) 39, 263-273

a=18.4054(18)Å   b=15.2554(12)Å   c=19.4653(16)Å

α=90.00°   β=113.314(6)°   γ=90.00°

[Mo2(??SePh)2(S2C2Ph2)4](Et4N)2(2MeCN)(Et2O)

C92H106Mo2N4OS8Se2

Booyong S. LimJames P. DonahueR. H. Holm

Inorganic Chemistry (2000) 39, 263-273

a=11.609(3)Å   b=29.268(10)Å   c=26.953(8)Å

α=90.00°   β=101.23(2)°   γ=90.00°

[(Cl4cat)(CH3CN)MoFe3S4(PPri)3]

C35H66Cl4Fe3MoNO2P3S4

Frank OsterlohBrent M. SegalCatalina AchimR. H. Holm

Inorganic Chemistry (2000) 39, 980-989

a=23.493(1)Å   b=11.4994(6)Å   c=18.265(1)Å

α=90.00°   β=90.00°   γ=90.00°

[(Cl4cat)2Mo2Fe6S8(PEt3)6]

C48H90Cl8Fe6Mo2O4P6S8

Frank OsterlohBrent M. SegalCatalina AchimR. H. Holm

Inorganic Chemistry (2000) 39, 980-989

a=13.549(3)Å   b=14.114(3)Å   c=23.654(5)Å

α=76.04(3)°   β=86.02(3)°   γ=62.57(3)°

C32H55NOS5W

C32H55NOS5W

Kie-Moon SungR. H. Holm

Inorganic Chemistry (2000) 39, 1275-1281

a=25.4814(5)Å   b=16.9145(2)Å   c=17.1093(4)Å

α=90.00°   β=90.00°   γ=90.00°

C32H55NOS5W

C32H55NOS5W

Kie-Moon SungR. H. Holm

Inorganic Chemistry (2000) 39, 1275-1281

a=25.4814(5)Å   b=16.9145(2)Å   c=17.1093(4)Å

α=90.00°   β=90.00°   γ=90.00°

C22H37NOS4W

C22H37NOS4W

Kie-Moon SungR. H. Holm

Inorganic Chemistry (2000) 39, 1275-1281

a=8.7440(3)Å   b=24.2608(3)Å   c=12.7236(4)Å

α=90.00°   β=102.844(2)°   γ=90.00°

C23H37NOS5W

C23H37NOS5W

Kie-Moon SungR. H. Holm

Inorganic Chemistry (2000) 39, 1275-1281

a=10.1257(2)Å   b=16.17560(10)Å   c=25.8216(5)Å

α=88.9150(10)°   β=82.50°   γ=84.2420(10)°

C32H55NOS4SeW

C32H55NOS4SeW

Kie-Moon SungR. H. Holm

Inorganic Chemistry (2000) 39, 1275-1281

a=25.5714(7)Å   b=16.8328(4)Å   c=17.2163(5)Å

α=90.00°   β=90.00°   γ=90.00°

C23H37NOS4SeW

C23H37NOS4SeW

Kie-Moon SungR. H. Holm

Inorganic Chemistry (2000) 39, 1275-1281

a=19.2516(4)Å   b=19.2618(3)Å   c=19.3633(4)Å

α=103.4970(10)°   β=104.7940(10)°   γ=116.1700(10)°

C23H37NOS5W

C23H37NOS5W

Kie-Moon SungR. H. Holm

Inorganic Chemistry (2000) 39, 1275-1281

a=10.1257(2)Å   b=16.17560(10)Å   c=25.8216(5)Å

α=88.9150(10)°   β=82.50°   γ=84.2420(10)°

C32H55NOS4SeW

C32H55NOS4SeW

Kie-Moon SungR. H. Holm

Inorganic Chemistry (2000) 39, 1275-1281

a=25.5714(7)Å   b=16.8328(4)Å   c=17.2163(5)Å

α=90.00°   β=90.00°   γ=90.00°

Azide vanadium edge bridged double cubane

(Et4N)4[(C9H10N6B)2V2Fe6S8(N3)4](CH3CN)2

Thomas A. ScottR. H. Holm

Inorganic Chemistry (2008) 47, 3426-3432

a=11.867(10)Å   b=20.779(19)Å   c=17.148(15)Å

α=90.00°   β=100.134(14)°   γ=90.00°

Cyano vanadium edge-bridged-double-cubane

(Bu4N)4((C9H10N6B)2V2Fe6S8(CN)4)(CH3CN)6

Thomas A. ScottR. H. Holm

Inorganic Chemistry (2008) 47, 3426-3432

a=18.617(3)Å   b=16.165(3)Å   c=23.299(4)Å

α=90.00°   β=110.141(2)°   γ=90.00°

Cyano vanadium single cubane

(Et4N)2((C9H10N6B)VFe3S4(CN)3)

Thomas A. ScottR. H. Holm

Inorganic Chemistry (2008) 47, 3426-3432

a=11.224(2)Å   b=40.248(7)Å   c=12.602(2)Å

α=90.00°   β=97.759(3)°   γ=90.00°

Fluoride Vanadium edge bridged double cubane

(Et4N)4[(C9H10N6B)2V2Fe6S8F4](CH3CN)8(H2O)3

Thomas A. ScottR. H. Holm

Inorganic Chemistry (2008) 47, 3426-3432

a=14.743(2)Å   b=29.397(4)Å   c=11.0978(15)Å

α=90.00°   β=90.00°   γ=90.00°

Azide vanadium single cubane

(Et4N)2((C9H10N6B)VFe3S4(N3)3)

Thomas A. ScottR. H. Holm

Inorganic Chemistry (2008) 47, 3426-3432

a=23.671(8)Å   b=34.548(12)Å   c=15.700(5)Å

α=90.00°   β=108.308(7)°   γ=90.00°

Floride vanadium single cubane

(Et4N)2((C9H10N6B)VFe3S4F3)(CH3CN)

Thomas A. ScottR. H. Holm

Inorganic Chemistry (2008) 47, 3426-3432

a=10.8425(6)Å   b=16.8430(10)Å   c=21.8996(13)Å

α=90.00°   β=96.1270(10)°   γ=90.00°

C34H66Fe2N2O2S2Si4

C34H66Fe2N2O2S2Si4

Ruslan PryadunR. H. Holm

Inorganic Chemistry (2008) 47, 3366-3370

a=9.1111(12)Å   b=11.6967(15)Å   c=12.7847(16)Å

α=63.335(2)°   β=82.641(3)°   γ=68.006(2)°

C39H75Fe3N3S4Si6

C39H75Fe3N3S4Si6

Ruslan PryadunR. H. Holm

Inorganic Chemistry (2008) 47, 3366-3370

a=13.768(3)Å   b=16.455(3)Å   c=24.499(5)Å

α=90.00°   β=90.48(3)°   γ=90.00°

C39H75Fe3N3S3SeSi6

C39H75Fe3N3S3SeSi6

Ruslan PryadunR. H. Holm

Inorganic Chemistry (2008) 47, 3366-3370

a=13.7863(14)Å   b=16.4287(18)Å   c=24.572(3)Å

α=90.00°   β=90.918(2)°   γ=90.00°

C48H99Fe3N3S4Si6,C4H10O

C48H99Fe3N3S4Si6,C4H10O

Ruslan PryadunR. H. Holm

Inorganic Chemistry (2008) 47, 3366-3370

a=12.7083(10)Å   b=23.1244(17)Å   c=23.0203(18)Å

α=90.00°   β=93.909(2)°   γ=90.00°

(Et4N)3(C9BH10N6)MoFe3S4(CN)3(MeCN)

C38H73BFe3MoN13S4

Russell P. PesaventoCurtis P. BerlinguetteR. H. Holm

Inorganic Chemistry (2007) 46, 510-516

a=12.790(5)Å   b=13.476(7)Å   c=17.120(6)Å

α=89.51(4)°   β=75.03(3)°   γ=66.86(3)°

C66H118B2Fe6Mo2N26S8

C66H118B2Fe6Mo2N26S8

Russell P. PesaventoCurtis P. BerlinguetteR. H. Holm

Inorganic Chemistry (2007) 46, 510-516

a=12.022(5)Å   b=14.269(7)Å   c=15.745(8)Å

α=112.40(4)°   β=96.86(6)°   γ=107.08(4)°

C44H82BFe3MoN11S4

C44H82BFe3MoN11S4

Russell P. PesaventoCurtis P. BerlinguetteR. H. Holm

Inorganic Chemistry (2007) 46, 510-516

a=11.1891(15)Å   b=40.210(5)Å   c=12.596(3)Å

α=90.00°   β=97.934(8)°   γ=90.00°

C19H42F3MoN3O6SSi

C19H42F3MoN3O6SSi

David V. PartykaRichard J. StaplesR. H. Holm

Inorganic Chemistry (2003) 42, 7877-7886

a=8.3223(17)Å   b=30.128(6)Å   c=11.041(2)Å

α=90.00°   β=93.91(3)°   γ=90.00°

C10H22F3MoN3O6S

C10H22F3MoN3O6S

David V. PartykaRichard J. StaplesR. H. Holm

Inorganic Chemistry (2003) 42, 7877-7886

a=7.7008(15)Å   b=15.198(3)Å   c=14.866(3)Å

α=90.00°   β=94.03(3)°   γ=90.00°

C25H54F3MoN3O6SSi

C25H54F3MoN3O6SSi

David V. PartykaRichard J. StaplesR. H. Holm

Inorganic Chemistry (2003) 42, 7877-7886

a=17.126(3)Å   b=9.4382(19)Å   c=22.930(5)Å

α=90.00°   β=111.91(3)°   γ=90.00°

C32H66F6Mo2N6O11S2

C32H66F6Mo2N6O11S2

David V. PartykaRichard J. StaplesR. H. Holm

Inorganic Chemistry (2003) 42, 7877-7886

a=10.071(2)Å   b=10.541(2)Å   c=11.868(2)Å

α=70.98(3)°   β=74.29(3)°   γ=88.13(3)°

C16H34F3MoN3O6S

C16H34F3MoN3O6S

David V. PartykaRichard J. StaplesR. H. Holm

Inorganic Chemistry (2003) 42, 7877-7886

a=13.214(3)Å   b=15.653(3)Å   c=11.290(2)Å

α=90.00°   β=90.00°   γ=90.00°

C19H42F3N3O6SSiW

C19H42F3N3O6SSiW

David V. PartykaRichard J. StaplesR. H. Holm

Inorganic Chemistry (2003) 42, 7877-7886

a=8.2970(17)Å   b=30.090(6)Å   c=11.006(2)Å

α=90.00°   β=93.82(3)°   γ=90.00°

C30H66F6N4O9S2SiW

C30H66F6N4O9S2SiW

David V. PartykaRichard J. StaplesR. H. Holm

Inorganic Chemistry (2003) 42, 7877-7886

a=14.432(3)Å   b=25.788(5)Å   c=12.065(2)Å

α=90.00°   β=90.00°   γ=90.00°

C16H34F3N3O6SW

C16H34F3N3O6SW

David V. PartykaRichard J. StaplesR. H. Holm

Inorganic Chemistry (2003) 42, 7877-7886

a=13.1832(13)Å   b=15.6160(16)Å   c=11.3168(10)Å

α=90.00°   β=90.00°   γ=90.00°

C15H33MoN3OS4

C15H33MoN3OS4

David V. PartykaRichard J. StaplesR. H. Holm

Inorganic Chemistry (2003) 42, 7877-7886

a=10.360(2)Å   b=9.4975(19)Å   c=22.348(5)Å

α=90.00°   β=90.84(3)°   γ=90.00°

C15H33N3OS2W

C15H33N3OS2W

David V. PartykaRichard J. StaplesR. H. Holm

Inorganic Chemistry (2003) 42, 7877-7886

a=12.644(3)Å   b=16.067(3)Å   c=9.906(2)Å

α=90.00°   β=90.00°   γ=90.00°

C16H34.5MoN3.5S3

C16H34.5MoN3.5S3

David V. PartykaRichard J. StaplesR. H. Holm

Inorganic Chemistry (2003) 42, 7877-7886

a=13.549(2)Å   b=13.549(2)Å   c=7.2270(17)Å

α=90.00°   β=90.00°   γ=120.00°

Tetrakis(μ4-sulfido)tris(tricyclohexylphosphine)chloro-tetra-iron acetonitrile solvate

Fe4S4(PCy3)3Cl

Hong-Cai ZhouR. H. Holm

Inorganic Chemistry (2003) 42, 11-21

a=19.842(2)Å   b=21.036(3)Å   c=15.508(4)Å

α=90.00°   β=90.00°   γ=90.00°

Tetrakis(μ3-sulfido)tris(tricyclohexylphosphine)benzenethiolato- tetra-iron

Fe4S4(PCy3)3SPh

Hong-Cai ZhouR. H. Holm

Inorganic Chemistry (2003) 42, 11-21

a=21.6483(12)Å   b=15.6065(8)Å   c=19.4379(10)Å

α=90.00°   β=91.0150(10)°   γ=90.00°

Bis(μ4-sulfido)hexakis(μ3-sulfido)bis(triphenylsilylthiolato)tetrak is(tri-i-propylphosphine)- octa-iron

Fe8S8(SSiPh3)2(PiPr3)4

Hong-Cai ZhouR. H. Holm

Inorganic Chemistry (2003) 42, 11-21

a=11.2319(7)Å   b=13.6000(8)Å   c=15.3832(9)Å

α=82.0510(10)°   β=80.9240(10)°   γ=71.3750(10)°

Bis(μ4-sulfido)hexakis(μ3-sulfido)hexakis(tri-i-propylphosphine)- octa-iron

Fe8S8(PiPr3)6

Hong-Cai ZhouR. H. Holm

Inorganic Chemistry (2003) 42, 11-21

a=12.7076(17)Å   b=12.9869(17)Å   c=13.3260(17)Å

α=72.603(2)°   β=67.513(2)°   γ=80.848(3)°

Octakis(bis(μ3-sulfido)tricyclohexylphosphine-di-iron) ether tetrahydrofuran solvate

Fe16S16(PCy3)8

Hong-Cai ZhouR. H. Holm

Inorganic Chemistry (2003) 42, 11-21

a=30.095(2)Å   b=20.3615(14)Å   c=34.992(3)Å

α=90.00°   β=111.0920(10)°   γ=90.00°

(C8H20N)4(C18H20B2Cl4Fe6N12S8V2)(C2H3N)2

(C8H20N)4(C18H20B2Cl4Fe6N12S8V2)(C2H3N)2

Christina HauserEckhard BillR. H. Holm

Inorganic Chemistry (2002) 41, 1615-1624

a=14.429(2)Å   b=14.217(2)Å   c=19.412(3)Å

α=90.00°   β=94.212(2)°   γ=90.00°

(C27H55BFe3N6P3S4V)(F6P)

(C27H55BFe3N6P3S4V)(F6P)

Christina HauserEckhard BillR. H. Holm

Inorganic Chemistry (2002) 41, 1615-1624

a=21.0595(12)Å   b=19.8083(11)Å   c=21.1137(12)Å

α=90.00°   β=90.00°   γ=90.00°

C42H80B2Fe6N12P4S8V2

C42H80B2Fe6N12P4S8V2

Christina HauserEckhard BillR. H. Holm

Inorganic Chemistry (2002) 41, 1615-1624

a=11.3645(6)Å   b=25.1144(14)Å   c=12.7090(7)Å

α=90.00°   β=112.2380(10)°   γ=90.00°

None

(Et4N)3[(edt)2Mo2FeS6]

Hong-Cai ZhouWeiping SuCatalina AchimP. Venkateswara RaoR. H. Holm

Inorganic Chemistry (2002) 41, 3191-3201

a=13.7054(15)Å   b=18.404(2)Å   c=17.5020(19)Å

α=90.00°   β=101.551(4)°   γ=90.00°

None

(Et4N)3[(edt)2W2FeS6]

Hong-Cai ZhouWeiping SuCatalina AchimP. Venkateswara RaoR. H. Holm

Inorganic Chemistry (2002) 41, 3191-3201

a=13.668(3)Å   b=18.355(4)Å   c=17.482(3)Å

α=90.00°   β=101.382(4)°   γ=90.00°

None

(NEt4)4(Mo2Fe4S9(edt)2)

Hong-Cai ZhouWeiping SuCatalina AchimP. Venkateswara RaoR. H. Holm

Inorganic Chemistry (2002) 41, 3191-3201

a=17.8927(9)Å   b=34.1370(18)Å   c=12.5379(6)Å

α=90.00°   β=127.9680(10)°   γ=90.00°

None

(NEt4)3(Mo2Fe4S9(edt)2),2(C3H7NO)

Hong-Cai ZhouWeiping SuCatalina AchimP. Venkateswara RaoR. H. Holm

Inorganic Chemistry (2002) 41, 3191-3201

a=10.520(2)Å   b=17.153(4)Å   c=32.639(7)Å

α=90.00°   β=98.833(4)°   γ=90.00°

None

(NEt4)4(Mo2Fe4S9(edt)2)

Hong-Cai ZhouWeiping SuCatalina AchimP. Venkateswara RaoR. H. Holm

Inorganic Chemistry (2002) 41, 3191-3201

a=19.0544(12)Å   b=17.6596(10)Å   c=17.3178(11)Å

α=90.00°   β=90.00°   γ=90.00°

None

(NBu4)3(Mo2Fe4S9(edt)2)(DMF)

Hong-Cai ZhouWeiping SuCatalina AchimP. Venkateswara RaoR. H. Holm

Inorganic Chemistry (2002) 41, 3191-3201

a=16.725(2)Å   b=11.7601(17)Å   c=40.348(6)Å

α=90.00°   β=93.105(2)°   γ=90.00°

None

(Et4N)3[(edt)2Mo2Fe5S11]

Hong-Cai ZhouWeiping SuCatalina AchimP. Venkateswara RaoR. H. Holm

Inorganic Chemistry (2002) 41, 3191-3201

a=10.0129(10)Å   b=32.172(3)Å   c=19.0368(18)Å

α=90.00°   β=92.815(2)°   γ=90.00°

C26H60N2P4Re6Se8

C26H60N2P4Re6Se8

Thomas G. GrayR. H. Holm

Inorganic Chemistry (2002) 41, 4211-4216

a=10.5369(9)Å   b=11.6919(10)Å   c=12.8561(11)Å

α=71.208(2)°   β=82.033(2)°   γ=70.620(2)°

C55H95BNP5Re6Se8

C55H95BNP5Re6Se8

Thomas G. GrayR. H. Holm

Inorganic Chemistry (2002) 41, 4211-4216

a=21.2879(8)Å   b=13.3830(5)Å   c=26.6159(10)Å

α=90.00°   β=111.383(2)°   γ=90.00°

C13.5H30ClNO0.5P2Re3Se4

C13.5H30ClNO0.5P2Re3Se4

Thomas G. GrayR. H. Holm

Inorganic Chemistry (2002) 41, 4211-4216

a=18.5879(7)Å   b=35.3143(13)Å   c=18.0726(6)Å

α=90.00°   β=90.00°   γ=90.00°

C26H52MoN2O2S4

C26H52MoN2O2S4

Dmitry V. FomitchevBooyong S. LimR. H. Holm

Inorganic Chemistry (2001) 40, 645-654

a=14.3994(13)Å   b=13.8728(12)Å   c=18.0505(16)Å

α=90.00°   β=113.3500(10)°   γ=90.00°

C18H32MoNO2S4

C18H32MoNO2S4

Dmitry V. FomitchevBooyong S. LimR. H. Holm

Inorganic Chemistry (2001) 40, 645-654

a=12.0501(11)Å   b=14.9688(19)Å   c=15.0781(16)Å

α=113.147(12)°   β=107.750(8)°   γ=90.337(10)°

C26H52N2O2S4W

C26H52N2O2S4W

Dmitry V. FomitchevBooyong S. LimR. H. Holm

Inorganic Chemistry (2001) 40, 645-654

a=14.4185(10)Å   b=13.8166(10)Å   c=18.0792(16)Å

α=90.00°   β=113.4720(10)°   γ=90.00°

C18H32NO2S4W

C18H32NO2S4W

Dmitry V. FomitchevBooyong S. LimR. H. Holm

Inorganic Chemistry (2001) 40, 645-654

a=15.035(3)Å   b=11.996(2)Å   c=26.302(5)Å

α=90.00°   β=96.58(3)°   γ=90.00°

C28H58MoN2S6

C28H58MoN2S6

Dmitry V. FomitchevBooyong S. LimR. H. Holm

Inorganic Chemistry (2001) 40, 645-654

a=15.7148(8)Å   b=12.7621(7)Å   c=18.5212(10)Å

α=90.00°   β=103.5170(10)°   γ=90.00°

C22H41N2S6W

C22H41N2S6W

Dmitry V. FomitchevBooyong S. LimR. H. Holm

Inorganic Chemistry (2001) 40, 645-654

a=9.6566(14)Å   b=23.791(3)Å   c=13.4302(19)Å

α=90.00°   β=106.096(12)°   γ=90.00°

C28H58N2S6W

C28H58N2S6W

Dmitry V. FomitchevBooyong S. LimR. H. Holm

Inorganic Chemistry (2001) 40, 645-654

a=15.7642(17)Å   b=12.6922(13)Å   c=18.4816(19)Å

α=90.00°   β=104.037(2)°   γ=90.00°

None

(TpVFe3S4(PBu3)3)(PF6)

Jing-Lin ZuoHong-Cai ZhouR. H. Holm

Inorganic Chemistry (2003) 42, 4624-4631

a=15.897(15)Å   b=24.33(2)Å   c=16.750(16)Å

α=90.00°   β=98.388(13)°   γ=90.00°

C23H42BCl3Fe3MoN7S4

C23H42BCl3Fe3MoN7S4

Dmitry V. FomitchevCraig C. McLauchlanR. H. Holm

Inorganic Chemistry (2002) 41, 958-966

a=10.110(4)Å   b=10.387(4)Å   c=19.019(8)Å

α=77.920(4)°   β=75.755(4)°   γ=81.442(4)°

C25H46BCl3Fe3MoN7S4

C25H46BCl3Fe3MoN7S4

Dmitry V. FomitchevCraig C. McLauchlanR. H. Holm

Inorganic Chemistry (2002) 41, 958-966

a=10.205(2)Å   b=11.452(2)Å   c=19.570(4)Å

α=92.04(3)°   β=103.88(3)°   γ=115.80(3)°

(C30H31BFe3MoN6S8)(C8H20N)

(C30H31BFe3MoN6S8)(C8H20N)

Dmitry V. FomitchevCraig C. McLauchlanR. H. Holm

Inorganic Chemistry (2002) 41, 958-966

a=12.182(3)Å   b=13.463(3)Å   c=29.371(7)Å

α=90.00°   β=94.187(5)°   γ=90.00°

(C16H36N)2(C9H10B1Cl3Fe3Mo1S4)(C2H3N)

(C16H36N)2(C9H10B1Cl3Fe3Mo1S4)(C2H3N)

Dmitry V. FomitchevCraig C. McLauchlanR. H. Holm

Inorganic Chemistry (2002) 41, 958-966

a=13.7182(12)Å   b=29.809(3)Å   c=15.9875(15)Å

α=90.00°   β=113.477(2)°   γ=90.00°

C31H61BFe3MoN7S7

C31H61BFe3MoN7S7

Dmitry V. FomitchevCraig C. McLauchlanR. H. Holm

Inorganic Chemistry (2002) 41, 958-966

a=11.2756(15)Å   b=23.221(3)Å   c=36.140(5)Å

α=90.00°   β=95.001(3)°   γ=90.00°

(C16H24Fe3N6O3S8V)(C4H12N)2

(C16H24Fe3N6O3S8V)(C4H12N)2

Dmitry V. FomitchevCraig C. McLauchlanR. H. Holm

Inorganic Chemistry (2002) 41, 958-966

a=19.5532(8)Å   b=20.4057(8)Å   c=10.2203(4)Å

α=90.00°   β=90.00°   γ=90.00°

(C10H9Cl3Fe3N6O3S5V)(C4H12N)2

(C10H9Cl3Fe3N6O3S5V)(C4H12N)2

Dmitry V. FomitchevCraig C. McLauchlanR. H. Holm

Inorganic Chemistry (2002) 41, 958-966

a=9.1692(18)Å   b=15.161(3)Å   c=24.777(5)Å

α=90.00°   β=90.00°   γ=90.00°

(C31H30Fe3N6O3S8V)(C4H12N)2

(C31H30Fe3N6O3S8V)(C4H12N)2

Dmitry V. FomitchevCraig C. McLauchlanR. H. Holm

Inorganic Chemistry (2002) 41, 958-966

a=10.6568(8)Å   b=16.3387(12)Å   c=17.3981(13)Å

α=74.1910(10)°   β=72.2660(10)°   γ=88.073(2)°

[Et4N][(Cl4cat)2Mo2Fe6S8(Pet3)6].3CH3CN

C62H119Cl8Fe6Mo2N4O4P6S8

Frank OsterlohCatalina AchimR. H. Holm

Inorganic Chemistry (2001) 40, 224-232

a=35.447(6)Å   b=19.470(2)Å   c=14.284(2)Å

α=90.00°   β=101.36(2)°   γ=90.00°

Et4N[(Cl4cat)2Mo2Fe6S8(PEt3)6]

C56H110Cl8Fe6Mo2NO4P6S8

Frank OsterlohCatalina AchimR. H. Holm

Inorganic Chemistry (2001) 40, 224-232

a=15.8681(3)Å   b=24.7648(3)Å   c=23.7240(4)Å

α=90.00°   β=109.464(1)°   γ=90.00°

[Ph3PMe]5[(Cl4cat)4(Et3P)4(DMF)K3Mo4Fe12S20].4.5DMF.0.5Et2O

C161.5H193.5Cl16Fe12K3Mo4N5.5O14P9S20

Frank OsterlohCatalina AchimR. H. Holm

Inorganic Chemistry (2001) 40, 224-232

a=19.644(4)Å   b=20.548(4)Å   c=51.40(1)Å

α=90.00°   β=91.33(3)°   γ=90.00°

[Et4N]4[(Cl4cat)2Mo2Fe6S8(PEt3)6][(Cl4cat)2Mo2Fe6S8(PEt3)6]3.2Et2O.2MeCN

C232H456Cl32Fe24Mo8N6O17P24S32

Frank OsterlohCatalina AchimR. H. Holm

Inorganic Chemistry (2001) 40, 224-232

a=13.310(3)Å   b=23.690(5)Å   c=31.330(6)Å

α=102.81(3)°   β=98.81(3)°   γ=92.83(3)°

C16H40MoN2O3S

C16H40MoN2O3S

David V. PartykaR. H. Holm

Inorganic Chemistry (2004) 43, 8609-8616

a=13.699(3)Å   b=11.917(2)Å   c=13.252(3)Å

α=90.00°   β=94.53(3)°   γ=90.00°

C16H40N2O3SW

C16H40N2O3SW

David V. PartykaR. H. Holm

Inorganic Chemistry (2004) 43, 8609-8616

a=13.644(3)Å   b=11.966(2)Å   c=13.245(3)Å

α=90.00°   β=94.38(3)°   γ=90.00°