Structures by: Blake A. J.

Total: 1 415

Compound 6.H~2~O

C5H6N2O,H2O

Blake, A. J.McNab, H.

Acta Crystallographica Section C (1996) 52, 10 2622-2627

a=6.903(2)Å   b=6.302(2)Å   c=14.406(3)Å

α=90.00°   β=92.12(3)°   γ=90.00°

3[Cu(II)(dipic)(H2O)][1.5(4.4-bipy)][0.75(MeOH)][2(H2O)]

C36.25H29Cu3N6O15.75,0.5(CH4O)1.5(H2O)

Felloni, MarinaBlake, Alexander J.Hubberstey, PeterWilson, ClaireSchröder, Martin

Crystal Growth & Design (2009) 9, 11 4685

a=10.652(2)Å   b=10.765(2)Å   c=18.690(4)Å

α=84.13(3)°   β=86.84(3)°   γ=62.61(3)°

C6H12Cl2OPdS2

C6H12Cl2OPdS2

Tidey, Jeremiah P.O'Connor, Alice EMarkevich, AlexanderBichoutskaia, ElenaCavan, Joseph J. P.Lawrance, Geoffrey A.Wong, Henry L. S.McMaster, JonathanSchröder, MartinBlake, Alexander J.

Crystal growth & design (2015) 15, 1 115-123

a=9.3384(3)Å   b=12.6575(4)Å   c=9.0498(3)Å

α=90°   β=92.260(3)°   γ=90°

C40H20N10

C40H20N10

Lü, JianHan, Li-WeiAlsmail, Nada H.Blake, Alexander J.Lewis, WilliamCao, RongSchröder, Martin

Crystal growth & design (2015) 15, 9 4219-4224

a=34.345(3)Å   b=9.2471(14)Å   c=10.6446(10)Å

α=90°   β=104.008(10)°   γ=90°

0.25(C184H136O64Zr12)

0.25(C184H136O64Zr12)

Yan, YongO'Connor, Alice EKanthasamy, GopikkaaAtkinson, GeorgeAllan, David R.Blake, Alexander J.Schröder, Martin

Journal of the American Chemical Society (2018) 140, 11 3952-3958

a=18.9366(11)Å   b=18.9366(11)Å   c=32.864(3)Å

α=90°   β=90°   γ=90°

0.25(C184H136O64Zr12)

0.25(C184H136O64Zr12)

Yan, YongO'Connor, Alice EKanthasamy, GopikkaaAtkinson, GeorgeAllan, David R.Blake, Alexander J.Schröder, Martin

Journal of the American Chemical Society (2018) 140, 11 3952-3958

a=19.0375(16)Å   b=19.0375(16)Å   c=33.133(6)Å

α=90°   β=90°   γ=90°

0.25(C184H136O64Zr12)

0.25(C184H136O64Zr12)

Yan, YongO'Connor, Alice EKanthasamy, GopikkaaAtkinson, GeorgeAllan, David R.Blake, Alexander J.Schröder, Martin

Journal of the American Chemical Society (2018) 140, 11 3952-3958

a=19.0410(14)Å   b=19.0410(14)Å   c=33.134(6)Å

α=90°   β=90°   γ=90°

C88H72Hf6O32

C88H72Hf6O32

Yan, YongO'Connor, Alice EKanthasamy, GopikkaaAtkinson, GeorgeAllan, David R.Blake, Alexander J.Schröder, Martin

Journal of the American Chemical Society (2018) 140, 11 3952-3958

a=19.3567(16)Å   b=19.3567(16)Å   c=32.036(4)Å

α=90°   β=90°   γ=90°

C88H72Hf6O32

C88H72Hf6O32

Yan, YongO'Connor, Alice EKanthasamy, GopikkaaAtkinson, GeorgeAllan, David R.Blake, Alexander J.Schröder, Martin

Journal of the American Chemical Society (2018) 140, 11 3952-3958

a=19.1867(13)Å   b=19.1867(13)Å   c=32.543(3)Å

α=90°   β=90°   γ=90°

C9H7Cu3I3N3

C9H7Cu3I3N3

Thébault, FrédéricBarnett, Sarah A.Blake, Alexander J.Wilson, ClaireChampness, Neil R.Schröder, Martin

Inorganic chemistry (2006) 45, 16 6179-6187

a=8.643(2)Å   b=20.034(5)Å   c=8.384(2)Å

α=90.00°   β=99.846(4)°   γ=90.00°

C12H10ClNO3

C12H10ClNO3

Baolu ShiAlexander J. BlakeWilliam LewisIan B. CampbellBrian D. JudkinsChristopher J. Moody

Journal of Organic Chemistry (2010) 75, 152-161

a=8.0491(6)Å   b=11.8783(9)Å   c=11.8348(9)Å

α=90.00°   β=91.5410(10)°   γ=90.00°

C20H30O4,CHCl3

C20H30O4,CHCl3

Maliha UroosWilliam LewisAlexander J. BlakeChristopher J. Hayes

Journal of Organic Chemistry (2010) 75, 8465-8470

a=5.9089(15)Å   b=17.868(5)Å   c=10.642(3)Å

α=90.00°   β=97.847(4)°   γ=90.00°

C55H66ILaN2O3P2

C55H66ILaN2O3P2

Wooles, Ashley J.Cooper, Oliver J.McMaster, JonathanLewis, WilliamBlake, Alexander J.Liddle, Stephen T.

Organometallics (2010) 29, 10 2315

a=18.903(3)Å   b=12.1036(16)Å   c=22.446(3)Å

α=90.00°   β=90.00°   γ=90.00°

C44H37BrOP2Ru

C44H37BrOP2Ru

Grounds, HelenAnderson, James C.Hayter, BarryBlake, Alexander J.

Organometallics (2009) 28, 17 5289

a=12.837(2)Å   b=13.965(2)Å   c=20.176(3)Å

α=90.00°   β=94.568(3)°   γ=90.00°

C57H71KN2O2P2

C57H71KN2O2P2

Wooles, Ashley J.Gregson, MatthewRobinson, SarahCooper, Oliver J.Mills, David P.Lewis, WilliamBlake, Alexander J.Liddle, Stephen T.

Organometallics (2011) 30, 20 5326

a=10.4895(14)Å   b=12.6503(16)Å   c=40.112(5)Å

α=90.00°   β=93.309(2)°   γ=90.00°

C53H63KN2OP2

C53H63KN2OP2

Wooles, Ashley J.Gregson, MatthewRobinson, SarahCooper, Oliver J.Mills, David P.Lewis, WilliamBlake, Alexander J.Liddle, Stephen T.

Organometallics (2011) 30, 20 5326

a=11.7806(7)Å   b=13.3858(8)Å   c=17.0995(10)Å

α=74.123(1)°   β=74.504(1)°   γ=65.122(1)°

C51H59CeI2N2O2P2,3(C7H8)

C51H59CeI2N2O2P2,3(C7H8)

Wooles, Ashley J.Gregson, MatthewRobinson, SarahCooper, Oliver J.Mills, David P.Lewis, WilliamBlake, Alexander J.Liddle, Stephen T.

Organometallics (2011) 30, 20 5326

a=12.6855(8)Å   b=15.4244(10)Å   c=17.1748(11)Å

α=83.079(1)°   β=77.224(1)°   γ=85.417(1)°

C51H55I2N2O2P2Pr,3(C7H8)

C51H55I2N2O2P2Pr,3(C7H8)

Wooles, Ashley J.Gregson, MatthewRobinson, SarahCooper, Oliver J.Mills, David P.Lewis, WilliamBlake, Alexander J.Liddle, Stephen T.

Organometallics (2011) 30, 20 5326

a=12.7745(17)Å   b=15.235(2)Å   c=17.276(2)Å

α=85.157(2)°   β=76.840(2)°   γ=87.327(2)°

C43H43CsN2P2,0.5(C4H8O)

C43H43CsN2P2,0.5(C4H8O)

Wooles, Ashley J.Gregson, MatthewRobinson, SarahCooper, Oliver J.Mills, David P.Lewis, WilliamBlake, Alexander J.Liddle, Stephen T.

Organometallics (2011) 30, 20 5326

a=27.4890(16)Å   b=27.4890(16)Å   c=28.0813(14)Å

α=90.00°   β=90.00°   γ=120.00°

C52H67N2O2P2Si3Y,C7H8

C52H67N2O2P2Si3Y,C7H8

David P. MillsLyndsay SoutarWilliam LewisAlexander J. BlakeStephen T. Liddle

Journal of the American Chemical Society (2010) 132, 14379-14381

a=22.6125(9)Å   b=10.5065(4)Å   c=24.5966(12)Å

α=90.00°   β=100.141(4)°   γ=90.00°

C102H82Cd3N4O16

C102H82Cd3N4O16

Stephen P. ArgentAlex GreenawayMaria del Carmen Gimenez-LopezWilliam LewisHarriott NowellAndrei N. KhlobystovAlexander J. BlakeNeil R. ChampnessMartin Schröder

Journal of the American Chemical Society (2012) 134, 55-58

a=10.4977(17)Å   b=13.273(4)Å   c=16.561(3)Å

α=88.393(17)°   β=76.549(13)°   γ=69.16(2)°

2{L*Cd(NO3)2*DMF}

C30H30Cd2N10O14

Andrei N. KhlobystovMatthew T. BrettAlexander J. BlakeNeil R. ChampnessPeter M. W. GillDarragh P. O'NeillSimon J. TeatClaire WilsonMartin Schröder

Journal of the American Chemical Society (2003) 125, 6753-6761

a=8.4570(13)Å   b=9.581(2)Å   c=12.026(2)Å

α=88.117(2)°   β=88.678(3)°   γ=82.132(2)°

C54H72Cl3LaN12Ni6O36

C54H72Cl3LaN12Ni6O36

Xiang LinDan M. J. DobleAlexander J. BlakeAndrew HarrisonClaire WilsonMartin Schröder

Journal of the American Chemical Society (2003) 125, 9476-9483

a=12.4549(11)Å   b=12.4549(11)Å   c=12.736(2)Å

α=90.00°   β=90.00°   γ=120.00°

C54H72N12Ni6O24Ce,CO,2(ClO4)

C54H72N12Ni6O24Ce,CO,2(ClO4)

Xiang LinDan M. J. DobleAlexander J. BlakeAndrew HarrisonClaire WilsonMartin Schröder

Journal of the American Chemical Society (2003) 125, 9476-9483

a=12.4792(9)Å   b=12.4792(9)Å   c=12.7432(9)Å

α=90.00°   β=90.00°   γ=120.00°

{(Na3Li2O)[Ni(C9H12N2O4)]8(BF4)0.86(CH4O)1.14}(BF4)2.14(CH4O)2.25(C4H10O)0.75

{(Na3Li2O)[Ni(C9H12N2O4)]8(BF4)0.86(CH4O)1.14}(BF4)2.14(CH4O)2.25(C4H10O)0.75

Xiang LinDan M. J. DobleAlexander J. BlakeAndrew HarrisonClaire WilsonMartin Schröder

Journal of the American Chemical Society (2003) 125, 9476-9483

a=16.764(2)Å   b=20.095(2)Å   c=20.617(2)Å

α=81.121(2)°   β=66.353(2)°   γ=67.274(2)°

C24H20ClN1O4Re,CH2Cl2

C24H20ClN1O4Re,CH2Cl2

Michael MiddleditchJames C. AndersonAlexander J. BlakeClare Wilson

Inorganic Chemistry (2007) 46, 2797-2804

a=14.402(2)Å   b=16.830(3)Å   c=21.932(3)Å

α=90.00°   β=108.140(3)°   γ=90.00°

C15H13CaNO5

C15H13CaNO5

Williams, Colleen A.Blake, Alexander J.Wilson, ClaireHubberstey, PeterSchröder, Martin

Crystal Growth & Design (2008) 8, 3 911

a=6.8850(10)Å   b=21.065(3)Å   c=9.9679(14)Å

α=90.00°   β=90.00°   γ=90.00°

C15H13NO5Sr

C15H13NO5Sr

Williams, Colleen A.Blake, Alexander J.Wilson, ClaireHubberstey, PeterSchröder, Martin

Crystal Growth & Design (2008) 8, 3 911

a=7.1452(8)Å   b=10.1443(11)Å   c=20.695(2)Å

α=90.00°   β=90.00°   γ=90.00°

C24H47ClMoN2O3

C24H47ClMoN2O3

Cross, Warren B.Anderson, James C.Wilson, ClaireBlake, Alexander J.

Inorganic Chemistry (2006) 45, 11 4556-4561

a=13.7787(8)Å   b=14.7479(9)Å   c=15.4947(9)Å

α=74.810(1)°   β=86.015(1)°   γ=81.253(1)°

[Ti(N-2,6-C6H3Me2){mu-(MeO)2salen}]2

C52H54N6O8Ti2

Jacqueline M. McInnesDaniel SwallowAlexander J. BlakePhilip Mountford

Inorganic Chemistry (1998) 37, 5970-5977

a=17.902(5)Å   b=12.411(4)Å   c=21.068(5)Å

α=90.00°   β=90.270(20)°   γ=90.00°

[Ti(N-2,6-C6H3Me2)(Et2salen)]

C28H31N3O2Ti

Jacqueline M. McInnesDaniel SwallowAlexander J. BlakePhilip Mountford

Inorganic Chemistry (1998) 37, 5970-5977

a=12.216(4)Å   b=12.312(11)Å   c=17.246(2)Å

α=90.352(12)°   β=102.59(2)°   γ=104.96(2)°

[Nb(NBu-t)Cl2(py){eta2-N(SiMe3)CH2CH2N(H)CH2CH2(SiMe3)2}]

C22H50Cl2N5Nb1Si3

Philip E. CollierStephen M. PughHoward S. C. ClarkJason B. LoveAlexander J. BlakeF. Geoffrey N. ClokePhilip Mountford

Inorganic Chemistry (2000) 39, 2001-2005

a=9.0658(11)Å   b=25.1387(24)Å   c=15.1849(15)Å

α=90°   β=104.989(10)°   γ=90°

{[Cd2(mu-3,3'-pytz)3(NO3)4](EtOH)}n

C19H14.5CdN11O6.5

Matthew A. WithersbyAlexander J. BlakeNeil R. ChampnessPaul A. CookePeter HubbersteyWan-Sheung LiMartin Schröder

Inorganic Chemistry (1999) 38, 2259-2266

a=9.060(3)Å   b=9.848(3)Å   c=13.208(4)Å

α=86.76(3)°   β=79.04(3)°   γ=88.14(2)°

{[Cd2(mu-3,3'-pytz)3(NO3)4](CH2Cl2)}n

C18.5H13CdClN11O6

Matthew A. WithersbyAlexander J. BlakeNeil R. ChampnessPaul A. CookePeter HubbersteyWan-Sheung LiMartin Schröder

Inorganic Chemistry (1999) 38, 2259-2266

a=8.981(16)Å   b=9.93(2)Å   c=13.19(2)Å

α=94.12(15)°   β=102.35(13)°   γ=88.12(15)°

{[Zn2(mu-3,3-pytz)3(NO3)4](CH2Cl2)}n

C19H14Cl2N11O6Zn

Matthew A. WithersbyAlexander J. BlakeNeil R. ChampnessPaul A. CookePeter HubbersteyWan-Sheung LiMartin Schröder

Inorganic Chemistry (1999) 38, 2259-2266

a=9.1110(18)Å   b=12.474(3)Å   c=13.171(3)Å

α=117.79(3)°   β=102.39(3)°   γ=101.13(3)°

{[Cd(mu-(3,6-bis(pyridin-3-yl)-1,2,4,5-tetrazine)(NO3)2(MeOH)2]}n

C14H16Cd1N8O8

Matthew A. WithersbyAlexander J. BlakeNeil R. ChampnessPaul A. CookePeter HubbersteyWan-Sheung LiMartin Schröder

Inorganic Chemistry (1999) 38, 2259-2266

a=9.011Å   b=9.338Å   c=11.941Å

α=74.510°   β=86.960°   γ=86.500°

{[Zn2(3,6-bis(pyridin-3-yl)-1,2,4,5-tetrazine)2(NO3)4(MeOH)2 (mu-3,6-bis(pyridin-3-yl)-1,2,4,5-tetrazine)]}n

C19H16Zn1N11O7

Matthew A. WithersbyAlexander J. BlakeNeil R. ChampnessPaul A. CookePeter HubbersteyWan-Sheung LiMartin Schröder

Inorganic Chemistry (1999) 38, 2259-2266

a=7.535(1)Å   b=10.728(1)Å   c=15.219(2)Å

α=85.36(1)°   β=80.63(1)°   γ=69.34(1)°

{[Zn2(3,3'-pytz)2(NO3)4(EtOH)2(mu-3,3'-pytz)]}n

C20H18N11O7Zn

Matthew A. WithersbyAlexander J. BlakeNeil R. ChampnessPaul A. CookePeter HubbersteyWan-Sheung LiMartin Schröder

Inorganic Chemistry (1999) 38, 2259-2266

a=7.590(3)Å   b=10.561(2)Å   c=15.951(5)Å

α=87.56(2)°   β=83.49(4)°   γ=71.12(2)°

C10H20AgI6S5

C10H20AgI6S5

Alexander J. BlakeRobert O. GouldWan-Sheung LiVito LippolisSimon ParsonsChristian RadekMartin Schröder

Inorganic Chemistry (1998) 37, 5070-5077

a=21.688(4)Å   b=27.748(4)Å   c=8.623(2)Å

α=90.00°   β=90.00°   γ=90.00°

C12H24AgI7S6

C12H24AgI7S6

Alexander J. BlakeRobert O. GouldWan-Sheung LiVito LippolisSimon ParsonsChristian RadekMartin Schröder

Inorganic Chemistry (1998) 37, 5070-5077

a=9.458(4)Å   b=9.458(4)Å   c=9.458(4)Å

α=103.79(2)°   β=103.79(2)°   γ=103.79(2)°

C15H23AgF6O7

C15H23AgF6O7

Jawwad A. DarrMartyn PoliakoffAlexander J. BlakeWan-Sheung Li

Inorganic Chemistry (1998) 37, 5491-5496

a=14.152(3)Å   b=16.996(3)Å   c=8.620(2)Å

α=90.00°   β=106.99(2)°   γ=90.00°

C11H14AgF6O5

C11H14AgF6O5

Jawwad A. DarrMartyn PoliakoffAlexander J. BlakeWan-Sheung Li

Inorganic Chemistry (1998) 37, 5491-5496

a=21.376(3)Å   b=8.4143(17)Å   c=21.067(3)Å

α=90.00°   β=124.050(10)°   γ=90.00°

C12H24AgI3S6

C12H24AgI3S6

Alexander J. BlakeRobert O. GouldWan-Sheung LiVito LippolisSimon ParsonsChristian RadekMartin Schröder

Inorganic Chemistry (1998) 37, 5070-5077

a=18.5767(11)Å   b=11.9188(7)Å   c=5.2714(5)Å

α=90.00°   β=95.634(9)°   γ=90.00°

[Nb(O){(4-C6H4Me)C(NSiMe3)2}2Cl]

C28H50Nb1O1Cl1N4Si4

Peter J. StewartAlexander J. BlakePhilip Mountford

Inorganic Chemistry (1997) 36, 1982-1986

a=10.573(9)Å   b=11.173(8)Å   c=17.028(14)Å

α=100.65(6)°   β=93.92(6)°   γ=106.90(6)°

[Nb(NBu-t){PhC(NSiMe3)2}Cl2(py)] . 0.25(C6H14)

C22H37Nb1N4Si2Cl2,0.25(C6H14)

Peter J. StewartAlexander J. BlakePhilip Mountford

Inorganic Chemistry (1997) 36, 1982-1986

a=10.972(3)Å   b=17.100(4)Å   c=17.777(3)Å

α=91.368(15)°   β=95.509(22)°   γ=93.025(19)°

[(Me4taa)Zr(mu-NBu-t)2Zr(NHBu-t)2] . C7H8

C38H60Zr2N8,(C7H8)

Georgii I. NikonovAlexander J. BlakePhilip Mountford

Inorganic Chemistry (1997) 36, 1107-1112

a=19.286(7)Å   b=12.662(6)Å   c=18.260(8)Å

α=90.0°   β=90.0°   γ=90.0°

[(Me4taa)Zr(mu-N-2,6-C6H3Me2)2Zr(NH-2,6-C6H3Me2)2] . (C7H8)

C54H60N8Zr2,(C7H8)

Georgii I. NikonovAlexander J. BlakePhilip Mountford

Inorganic Chemistry (1997) 36, 1107-1112

a=25.353(11)Å   b=15.394(4)Å   c=16.423(4)Å

α=90.0°   β=123.75(2)°   γ=90.0°

C60H32In2O162,C2NH8,(H3O),4(C3H7NO),5(H2O)

C60H32In2O162,C2NH8,(H3O),4(C3H7NO),5(H2O)

Sihai YangGregory S. B. MartinJeremy J. TitmanAlexander J. BlakeDavid R. AllanNeil R. ChampnessMartin Schröder

Inorganic Chemistry (2011) 50, 9374-9384

a=9.8480(2)Å   b=9.8480(2)Å   c=35.0588(14)Å

α=90.00°   β=90.00°   γ=90.00°

C19H47IN4OSi3U

C19H47IN4OSi3U

Benedict M. GardnerWilliam LewisAlexander J. BlakeStephen T. Liddle

Inorganic Chemistry (2011) 50, 9631-9641

a=10.5721(9)Å   b=18.0017(15)Å   c=15.9406(13)Å

α=90.00°   β=94.060(2)°   γ=90.00°

C30H78I2N8SI6U2,2C7H8

C30H78I2N8SI6U2,2C7H8

Benedict M. GardnerWilliam LewisAlexander J. BlakeStephen T. Liddle

Inorganic Chemistry (2011) 50, 9631-9641

a=9.4693(10)Å   b=10.8245(11)Å   c=15.0764(15)Å

α=76.014(2)°   β=73.693(2)°   γ=78.467(2)°

C20H40Cl5LiO5U

C20H40Cl5LiO5U

Benedict M. GardnerWilliam LewisAlexander J. BlakeStephen T. Liddle

Inorganic Chemistry (2011) 50, 9631-9641

a=15.8302(17)Å   b=18.477(2)Å   c=20.372(2)Å

α=90.00°   β=90.00°   γ=90.00°

C27H61N5Si3U

C27H61N5Si3U

Benedict M. GardnerWilliam LewisAlexander J. BlakeStephen T. Liddle

Inorganic Chemistry (2011) 50, 9631-9641

a=12.5678(3)Å   b=16.6514(3)Å   c=16.7987(3)Å

α=90.00°   β=95.897(2)°   γ=90.00°

C21H57N5Si5U

C21H57N5Si5U

Benedict M. GardnerWilliam LewisAlexander J. BlakeStephen T. Liddle

Inorganic Chemistry (2011) 50, 9631-9641

a=16.5214(4)Å   b=11.3622(2)Å   c=17.9237(4)Å

α=90.00°   β=91.742(2)°   γ=90.00°

C23H55N4O2Si3U,C24H20B,C7H8

C23H55N4O2Si3U,C24H20B,C7H8

Benedict M. GardnerWilliam LewisAlexander J. BlakeStephen T. Liddle

Inorganic Chemistry (2011) 50, 9631-9641

a=15.7341(7)Å   b=19.7519(9)Å   c=18.2383(8)Å

α=90.00°   β=92.679(2)°   γ=90.00°

C38H94ClN8O2Si6U2,C32H12BF24

C38H94ClN8O2Si6U2,C32H12BF24

Benedict M. GardnerWilliam LewisAlexander J. BlakeStephen T. Liddle

Inorganic Chemistry (2011) 50, 9631-9641

a=13.3052(11)Å   b=18.1162(15)Å   c=20.5327(16)Å

α=69.659(2)°   β=88.863(2)°   γ=83.912(2)°

C24H49MnN4O7Si3U

C24H49MnN4O7Si3U

Benedict M. GardnerWilliam LewisAlexander J. BlakeStephen T. Liddle

Inorganic Chemistry (2011) 50, 9631-9641

a=19.5466(6)Å   b=9.5864(3)Å   c=19.8681(6)Å

α=90.00°   β=106.56°   γ=90.00°

C40H78Mn2N8O10Si6U2

C40H78Mn2N8O10Si6U2

Benedict M. GardnerWilliam LewisAlexander J. BlakeStephen T. Liddle

Inorganic Chemistry (2011) 50, 9631-9641

a=11.5133(3)Å   b=18.8947(5)Å   c=14.7578(4)Å

α=90.00°   β=98.878(2)°   γ=90.00°

C60H32In2O162,Li1.21.2,(H3O)0.80.8,14(H2O)

C60H32In2O162,Li1.21.2,(H3O)0.80.8,14(H2O)

Sihai YangGregory S. B. MartinJeremy J. TitmanAlexander J. BlakeDavid R. AllanNeil R. ChampnessMartin Schröder

Inorganic Chemistry (2011) 50, 9374-9384

a=9.892(10)Å   b=9.617(9)Å   c=35.11(3)Å

α=90.00°   β=90.544(17)°   γ=90.00°

C34H18InO8,C2H8N,2(C3H7NO),2.5(H2O)

C34H18InO8,C2H8N,2(C3H7NO),2.5(H2O)

Sihai YangGregory S. B. MartinJeremy J. TitmanAlexander J. BlakeDavid R. AllanNeil R. ChampnessMartin Schröder

Inorganic Chemistry (2011) 50, 9374-9384

a=45.040(5)Å   b=9.7592(10)Å   c=9.9522(10)Å

α=90.00°   β=102.486(2)°   γ=90.00°

C68H36In2O162,1.4Li1.40.6(H3O)0.6,4(C3H6O),11(H2O)

C68H36In2O162,1.4Li1.40.6(H3O)0.6,4(C3H6O),11(H2O)

Sihai YangGregory S. B. MartinJeremy J. TitmanAlexander J. BlakeDavid R. AllanNeil R. ChampnessMartin Schröder

Inorganic Chemistry (2011) 50, 9374-9384

a=45.20(2)Å   b=9.738(5)Å   c=9.944(3)Å

α=90.00°   β=102.053(19)°   γ=90.00°

C30H78I2N8Si6U2,0.5C7H8

C30H78I2N8Si6U2,0.5C7H8

Benedict M. GardnerWilliam LewisAlexander J. BlakeStephen T. Liddle

Inorganic Chemistry (2011) 50, 9631-9641

a=13.0925(10)Å   b=14.9116(12)Å   c=16.0345(13)Å

α=99.538(2)°   β=98.431(2)°   γ=115.066(2)°

[Pd(III)([9]aneS3)2]3+

PdC12H24S6,6(ClO4),3(H3O),H2O

Emma StephenAlexander J. BlakeEmma CarterDavid CollisonE. Stephen DaviesRuth EdgeWilliam LewisDamien M. MurphyClaire WilsonRobert O. GouldAlan J. HolderJonathan McMasterMartin Schröder

Inorganic Chemistry (2012) 51, 1450-1461

a=10.5602(11)Å   b=9.1932(10)Å   c=19.079(2)Å

α=90.00°   β=93.787(2)°   γ=90.00°

Pd(III)[18]aneS6

C12H24PdS6,6(ClO4),3(H5O2)

Emma StephenAlexander J. BlakeEmma CarterDavid CollisonE. Stephen DaviesRuth EdgeWilliam LewisDamien M. MurphyClaire WilsonRobert O. GouldAlan J. HolderJonathan McMasterMartin Schröder

Inorganic Chemistry (2012) 51, 1450-1461

a=9.9805(2)Å   b=10.62075(17)Å   c=18.2038(4)Å

α=90.00°   β=99.840(2)°   γ=90.00°

C12H24Pd1S62,2(PF6)

C12H24Pd1S62,2(PF6)

Emma StephenAlexander J. BlakeEmma CarterDavid CollisonE. Stephen DaviesRuth EdgeWilliam LewisDamien M. MurphyClaire WilsonRobert O. GouldAlan J. HolderJonathan McMasterMartin Schröder

Inorganic Chemistry (2012) 51, 1450-1461

a=19.613(4)Å   b=10.861(3)Å   c=5.7978(12)Å

α=90°   β=92.922(16)°   γ=90.00°

C47H77KN2O3

C47H77KN2O3

Wooles, Ashley J.Lewis, WilliamBlake, Alexander J.Liddle, Stephen T.

Organometallics (2013) 32, 18 5058

a=10.385(3)Å   b=15.557(5)Å   c=28.666(9)Å

α=90.00°   β=90.00°   γ=90.00°

C35H53I3N2U,C6D6

C35H53I3N2U,C6D6

Wooles, Ashley J.Lewis, WilliamBlake, Alexander J.Liddle, Stephen T.

Organometallics (2013) 32, 18 5058

a=22.595(6)Å   b=18.131(4)Å   c=10.480(3)Å

α=90.00°   β=90.00°   γ=90.00°

C39H56IN2U

C39H56IN2U

Wooles, Ashley J.Lewis, WilliamBlake, Alexander J.Liddle, Stephen T.

Organometallics (2013) 32, 18 5058

a=19.6738(13)Å   b=18.0264(12)Å   c=21.1293(14)Å

α=90°   β=90°   γ=90°

C35H59IN3Si2U

C35H59IN3Si2U

Wooles, Ashley J.Lewis, WilliamBlake, Alexander J.Liddle, Stephen T.

Organometallics (2013) 32, 18 5058

a=11.3021(4)Å   b=11.9853(4)Å   c=16.7492(5)Å

α=87.864(3)°   β=76.519(3)°   γ=66.236(3)°

C41H76N4Si4U,0.5(C6H14)

C41H76N4Si4U,0.5(C6H14)

Wooles, Ashley J.Lewis, WilliamBlake, Alexander J.Liddle, Stephen T.

Organometallics (2013) 32, 18 5058

a=19.5116(15)Å   b=11.7957(9)Å   c=42.786(3)Å

α=90.00°   β=94.127(2)°   γ=90.00°

C64H88I2N4U2,2(C7H8)

C64H88I2N4U2,2(C7H8)

Wooles, Ashley J.Lewis, WilliamBlake, Alexander J.Liddle, Stephen T.

Organometallics (2013) 32, 18 5058

a=32.2666(16)Å   b=12.9502(5)Å   c=21.3847(11)Å

α=90.00°   β=124.089(7)°   γ=90.00°

C58H82I2N4O2U2,2(C6D6)

C58H82I2N4O2U2,2(C6D6)

Wooles, Ashley J.Lewis, WilliamBlake, Alexander J.Liddle, Stephen T.

Organometallics (2013) 32, 18 5058

a=11.5779(7)Å   b=11.6898(7)Å   c=13.6188(6)Å

α=95.987(4)°   β=99.560(4)°   γ=104.433(5)°

C37H57I2N2O2U

C37H57I2N2O2U

Wooles, Ashley J.Lewis, WilliamBlake, Alexander J.Liddle, Stephen T.

Organometallics (2013) 32, 18 5058

a=16.8923(17)Å   b=12.3039(13)Å   c=19.382(2)Å

α=90.00°   β=96.889(2)°   γ=90.00°

C28H67N5Si3Th

C28H67N5Si3Th

Gardner, Benedict M.Lewis, WilliamBlake, Alexander J.Liddle, Stephen T.

Organometallics (2015) 34, 11 2386

a=10.0050(4)Å   b=23.2032(8)Å   c=16.5776(6)Å

α=90°   β=97.754(2)°   γ=90°

C48H112N8O2Si6Th2

C48H112N8O2Si6Th2

Gardner, Benedict M.Lewis, WilliamBlake, Alexander J.Liddle, Stephen T.

Organometallics (2015) 34, 11 2386

a=14.3210(3)Å   b=22.3137(4)Å   c=20.5302(4)Å

α=90°   β=94.3624(17)°   γ=90°

C24H57IN4Si3Th

C24H57IN4Si3Th

Gardner, Benedict M.Lewis, WilliamBlake, Alexander J.Liddle, Stephen T.

Organometallics (2015) 34, 11 2386

a=9.7217(9)Å   b=22.435(2)Å   c=16.0507(15)Å

α=90°   β=97.547(4)°   γ=90°

C28H65ClN4OSi3Th,C6H14

C28H65ClN4OSi3Th,C6H14

Gardner, Benedict M.Lewis, WilliamBlake, Alexander J.Liddle, Stephen T.

Organometallics (2015) 34, 11 2386

a=14.481(5)Å   b=20.964(7)Å   c=22.540(7)Å

α=71.861(5)°   β=74.644(5)°   γ=81.898(5)°

C48H112N8Si6Th2

C48H112N8Si6Th2

Gardner, Benedict M.Lewis, WilliamBlake, Alexander J.Liddle, Stephen T.

Organometallics (2015) 34, 11 2386

a=13.9997(3)Å   b=21.9902(5)Å   c=20.9322(5)Å

α=90°   β=91.306(2)°   γ=90°

C28H63N6Si3U,C24H20B,C7H8

C28H63N6Si3U,C24H20B,C7H8

Gardner, Benedict M.Lewis, WilliamBlake, Alexander J.Liddle, Stephen T.

Organometallics (2015) 34, 11 2386

a=27.557(8)Å   b=25.947(8)Å   c=21.479(6)Å

α=90°   β=128.242(5)°   γ=90°

C36H47IN2P3Si2Y

C36H47IN2P3Si2Y

Mills, David P.Lewis, WilliamBlake, Alexander J.Liddle, Stephen T.

Organometallics (2013) 32, 5 1239

a=20.021(3)Å   b=19.555(2)Å   c=10.4855(8)Å

α=90.00°   β=90.00°   γ=90.00°

C48H68IN4OP2Si2Y

C48H68IN4OP2Si2Y

Mills, David P.Lewis, WilliamBlake, Alexander J.Liddle, Stephen T.

Organometallics (2013) 32, 5 1239

a=11.8218(3)Å   b=13.8371(4)Å   c=16.3160(4)Å

α=92.766(2)°   β=99.723(2)°   γ=107.467(2)°

C44H63IN3O3P2Si2Y

C44H63IN3O3P2Si2Y

Mills, David P.Lewis, WilliamBlake, Alexander J.Liddle, Stephen T.

Organometallics (2013) 32, 5 1239

a=11.8331(13)Å   b=17.3545(18)Å   c=23.769(2)Å

α=90.00°   β=102.276(2)°   γ=90.00°

C47H65IN3OP2Si2Y,C4H8O

C47H65IN3OP2Si2Y,C4H8O

Mills, David P.Lewis, WilliamBlake, Alexander J.Liddle, Stephen T.

Organometallics (2013) 32, 5 1239

a=12.2756(2)Å   b=45.6639(7)Å   c=9.47291(14)Å

α=90.00°   β=99.2161(15)°   γ=90.00°

C84H96I2N4O5P4Si4Y2,3.25(C7H8)

C84H96I2N4O5P4Si4Y2,3.25(C7H8)

Mills, David P.Lewis, WilliamBlake, Alexander J.Liddle, Stephen T.

Organometallics (2013) 32, 5 1239

a=14.0687(6)Å   b=16.9323(7)Å   c=22.4949(9)Å

α=96.996(3)°   β=90.722(4)°   γ=93.541(4)°

C47H62N3OP2Si2Y,C7H8

C47H62N3OP2Si2Y,C7H8

Mills, David P.Soutar, LyndsayCooper, Oliver J.Lewis, WilliamBlake, Alexander J.Liddle, Stephen T.

Organometallics (2013) 32, 5 1251

a=10.5979(7)Å   b=12.8692(8)Å   c=20.1907(13)Å

α=82.257(2)°   β=87.160(2)°   γ=80.411(2)°

C52H71N4O3P2Si2Y

C52H71N4O3P2Si2Y

Mills, David P.Soutar, LyndsayCooper, Oliver J.Lewis, WilliamBlake, Alexander J.Liddle, Stephen T.

Organometallics (2013) 32, 5 1251

a=11.5702(17)Å   b=13.0541(19)Å   c=18.880(3)Å

α=80.088(3)°   β=88.140(3)°   γ=72.461(2)°

C45H52KN2P2Si2Y,2(C7H8)

C45H52KN2P2Si2Y,2(C7H8)

Mills, David P.Soutar, LyndsayCooper, Oliver J.Lewis, WilliamBlake, Alexander J.Liddle, Stephen T.

Organometallics (2013) 32, 5 1251

a=20.2089(3)Å   b=11.4985(2)Å   c=23.9442(4)Å

α=90.00°   β=92.0323(17)°   γ=90.00°

C76H86IN4O2P4Si4Y,1.5C7H8

C76H86IN4O2P4Si4Y,1.5C7H8

Mills, David P.Lewis, WilliamBlake, Alexander J.Liddle, Stephen T.

Organometallics (2013) 32, 5 1239

a=12.4201(3)Å   b=16.6524(4)Å   c=22.1146(3)Å

α=83.0555(16)°   β=82.7864(15)°   γ=69.759(2)°

C72H96N6P4S4Si4Y2,3.5C7H8

C72H96N6P4S4Si4Y2,3.5C7H8

Mills, David P.Soutar, LyndsayCooper, Oliver J.Lewis, WilliamBlake, Alexander J.Liddle, Stephen T.

Organometallics (2013) 32, 5 1251

a=11.87174(19)Å   b=18.9361(3)Å   c=22.0918(4)Å

α=90.00°   β=97.8907(15)°   γ=90.00°

(2,2'-Bipyridin-6-thiomethyl]BEDT-TTF

C21H16N2S9

Wang, QiangMartin, LeeBlake, Alexander J.Day, PeterAkutsu, HirokiWallis, John D.

Inorganic chemistry (2016) 55, 17 8543-8551

a=17.2349(4)Å   b=17.2808(4)Å   c=7.94770(10)Å

α=90.00°   β=92.095(15)°   γ=90.00°

Bis complex of Iron(II) tris((BEDT-TTF)methylthio-4-2,2'-bipyridine PF6 salt.

C63H48FeN6S272,2(PF6)

Wang, QiangMartin, LeeBlake, Alexander J.Day, PeterAkutsu, HirokiWallis, John D.

Inorganic chemistry (2016) 55, 17 8543-8551

a=23.8874(12)Å   b=23.8874(12)Å   c=36.086(4)Å

α=90.00°   β=90.00°   γ=120.00°

Em50rd82 THF/Hex

C22H20AgAuCl10S4

Blake, Alexander J.Donamaría, RocíoLippolis, VitoLópez-de-Luzuriaga, José MManso, ElenaMonge, MiguelOlmos, M. Elena

Inorganic chemistry (2014) 53, 19 10471-10484

a=8.4456(5)Å   b=21.8643(12)Å   c=17.2493(5)Å

α=90°   β=92.410(3)°   γ=90°

C24H24AgAuF10S6

C24H24AgAuF10S6

Blake, Alexander J.Donamaría, RocíoLippolis, VitoLópez-de-Luzuriaga, José MManso, ElenaMonge, MiguelOlmos, M. Elena

Inorganic chemistry (2014) 53, 19 10471-10484

a=14.8817(6)Å   b=11.4985(5)Å   c=18.8685(7)Å

α=90°   β=112.542(2)°   γ=90°