Structures by: Hutchinson D. J.

Total: 36

C29H30F6N7O7P1S2Zn1

C29H30F6N7O7P1S2Zn1

Hutchinson, Daniel JohnClauss, ReikeSárosi, Menyhárt-BotondHey-Hawkins, Evamarie

Dalton transactions (Cambridge, England : 2003) (2018) 47, 4 1053-1061

a=20.0495(4)Å   b=20.1730(4)Å   c=17.8536(4)Å

α=90°   β=103.526(2)°   γ=90°

C27H30N7OP

C27H30N7OP

Hutchinson, Daniel JohnClauss, ReikeSárosi, Menyhárt-BotondHey-Hawkins, Evamarie

Dalton transactions (Cambridge, England : 2003) (2018) 47, 4 1053-1061

a=8.3136(3)Å   b=11.9294(3)Å   c=13.9717(4)Å

α=112.525(2)°   β=99.453(2)°   γ=90.041(2)°

C27H30Cl3N7OPPdZn,C7H8,CH3NO2

C27H30Cl3N7OPPdZn,C7H8,CH3NO2

Hutchinson, Daniel JohnClauss, ReikeSárosi, Menyhárt-BotondHey-Hawkins, Evamarie

Dalton transactions (Cambridge, England : 2003) (2018) 47, 4 1053-1061

a=14.9279(5)Å   b=14.9701(5)Å   c=21.8728(8)Å

α=90°   β=94.602(4)°   γ=90°

C14H19N7O

C14H19N7O

Hutchinson, Daniel J.Hanton, Lyall R.Moratti, Stephen C.

Dalton transactions (Cambridge, England : 2003) (2014) 43, 22 8205-8218

a=11.7201(15)Å   b=8.1454(10)Å   c=15.683(3)Å

α=90.000(5)°   β=100.962(5)°   γ=90.000(5)°

C40H42N16O2

C40H42N16O2

Hutchinson, Daniel J.Hanton, Lyall R.Moratti, Stephen C.

Dalton transactions (Cambridge, England : 2003) (2014) 43, 22 8205-8218

a=33.8887(17)Å   b=33.8887Å   c=15.8396(10)Å

α=90.000°   β=90.000°   γ=90.000°

C41H49Cl7N17O34Pb4,3(CH3NO2),(ClO4)

C41H49Cl7N17O34Pb4,3(CH3NO2),(ClO4)

Hutchinson, Daniel J.Hanton, Lyall R.Moratti, Stephen C.

Dalton transactions (Cambridge, England : 2003) (2014) 43, 22 8205-8218

a=9.2296(10)Å   b=17.3147(18)Å   c=25.755(3)Å

α=102.491(4)°   β=93.675(4)°   γ=104.479(4)°

2(C42H45Cl4N17O19Pb2),C4H10O,4(C2H3N),2(O)

2(C42H45Cl4N17O19Pb2),C4H10O,4(C2H3N),2(O)

Hutchinson, Daniel J.Hanton, Lyall R.Moratti, Stephen C.

Dalton transactions (Cambridge, England : 2003) (2014) 43, 22 8205-8218

a=29.752(3)Å   b=10.5359(9)Å   c=44.383(4)Å

α=90.000°   β=109.239(3)°   γ=90.000°

C54H54Cu3F12N18O17S4,2(CF3O3S),2(C2H3N),H2O

C54H54Cu3F12N18O17S4,2(CF3O3S),2(C2H3N),H2O

Hutchinson, Daniel J.Hanton, Lyall R.Moratti, Stephen C.

Dalton transactions (Cambridge, England : 2003) (2014) 43, 22 8205-8218

a=11.93796(15)Å   b=18.6842(2)Å   c=21.6335(2)Å

α=113.9013(11)°   β=92.2282(9)°   γ=105.8198(11)°

C102H93F48N35O52Pb8S16,4(C2H3N),O

C102H93F48N35O52Pb8S16,4(C2H3N),O

Hutchinson, Daniel J.Hanton, Lyall R.Moratti, Stephen C.

Dalton transactions (Cambridge, England : 2003) (2014) 43, 22 8205-8218

a=18.0882(18)Å   b=19.955(3)Å   c=26.553(3)Å

α=70.191(5)°   β=87.643(5)°   γ=87.432(5)°

C80H84Ag2N32O4,2(CF3O3S),C2H3N,H2O

C80H84Ag2N32O4,2(CF3O3S),C2H3N,H2O

Hutchinson, Daniel J.Hanton, Lyall R.Moratti, Stephen C.

Dalton transactions (Cambridge, England : 2003) (2014) 43, 22 8205-8218

a=15.957(3)Å   b=16.872(3)Å   c=17.655(3)Å

α=90.879(8)°   β=104.340(8)°   γ=99.074(8)°

2-Methyl-4,6-bis(1-methylhydrazino)pyrimidine

C7H14N6

Hutchinson, Daniel J.Hanton, Lyall R.Moratti, Stephen C.

Acta Crystallographica Section E (2009) 65, 7 o1546

a=9.2255(6)Å   b=8.5075(6)Å   c=12.2323(7)Å

α=90.000°   β=109.233(3)°   γ=90.000°

C35H39Cl4.88N15O23.51Pb3,1.12(ClO4),C2H3N

C35H39Cl4.88N15O23.51Pb3,1.12(ClO4),C2H3N

Hutchinson, Daniel J.James, Matthew P.Hanton, Lyall R.Moratti, Stephen C.

Inorganic chemistry (2014) 53, 4 2122-2132

a=9.9128(10)Å   b=14.6570(16)Å   c=25.946(3)Å

α=93.371(4)°   β=92.665(4)°   γ=103.775(4)°

C35H39Cl5N15O23Pb3,ClO4,CH3NO2

C35H39Cl5N15O23Pb3,ClO4,CH3NO2

Hutchinson, Daniel J.James, Matthew P.Hanton, Lyall R.Moratti, Stephen C.

Inorganic chemistry (2014) 53, 4 2122-2132

a=22.3152(3)Å   b=11.64703(16)Å   c=25.6567(4)Å

α=90.0°   β=103.2066(14)°   γ=90.0°

C35H37N15O9Zn3,3(CF3O3S)

C35H37N15O9Zn3,3(CF3O3S)

Hutchinson, Daniel J.James, Matthew P.Hanton, Lyall R.Moratti, Stephen C.

Inorganic chemistry (2014) 53, 4 2122-2132

a=23.791(4)Å   b=8.4896(16)Å   c=40.356(7)Å

α=90.000°   β=103.753(6)°   γ=90.000°

C41H39F18N15O20Pb3S6,C2H3N

C41H39F18N15O20Pb3S6,C2H3N

Hutchinson, Daniel J.James, Matthew P.Hanton, Lyall R.Moratti, Stephen C.

Inorganic chemistry (2014) 53, 4 2122-2132

a=14.3516(9)Å   b=15.9545(9)Å   c=17.4788(11)Å

α=103.245(2)°   β=92.541(3)°   γ=102.890(2)°

C70H78Ag3N30O4,2(CF3O3S)

C70H78Ag3N30O4,2(CF3O3S)

Hutchinson, Daniel J.James, Matthew P.Hanton, Lyall R.Moratti, Stephen C.

Inorganic chemistry (2014) 53, 4 2122-2132

a=15.9060(4)Å   b=20.1642(6)Å   c=28.7161(12)Å

α=90.0°   β=98.747(3)°   γ=90.0°

C70H77Ag6N30O4,2(CF3O3S)

C70H77Ag6N30O4,2(CF3O3S)

Hutchinson, Daniel J.James, Matthew P.Hanton, Lyall R.Moratti, Stephen C.

Inorganic chemistry (2014) 53, 4 2122-2132

a=34.0737(14)Å   b=20.2018(13)Å   c=33.1437(11)Å

α=90.0°   β=91.233(3)°   γ=90.0°

C31H28F12N8O16Pb2S4

C31H28F12N8O16Pb2S4

Daniel J. HutchinsonLyall R. HantonStephen C. Moratti

Inorganic Chemistry (2013) 52, 2716-2728

a=10.9614(5)Å   b=14.1662(6)Å   c=16.4345(7)Å

α=102.640(3)°   β=104.898(3)°   γ=100.224(3)°

C33H37Cu2N11O4

C33H37Cu2N11O4

Daniel J. HutchinsonLyall R. HantonStephen C. Moratti

Inorganic Chemistry (2013) 52, 2716-2728

a=13.2961(9)Å   b=13.8546(9)Å   c=16.5011(12)Å

α=86.432(3)°   β=82.154(3)°   γ=73.922(3)°

C29H31Cl4N9O20Pb2

C29H31Cl4N9O20Pb2

Daniel J. HutchinsonLyall R. HantonStephen C. Moratti

Inorganic Chemistry (2013) 52, 2716-2728

a=13.3813(5)Å   b=13.6338(5)Å   c=14.6157(6)Å

α=117.6600(10)°   β=92.1710(10)°   γ=115.2450(10)°

C27H30B3F12N8O5Zn2,BF4,C2H3N,O

C27H30B3F12N8O5Zn2,BF4,C2H3N,O

Daniel J. HutchinsonLyall R. HantonStephen C. Moratti

Inorganic Chemistry (2013) 52, 2716-2728

a=10.4633(11)Å   b=15.6954(16)Å   c=13.1984(12)Å

α=90.000(5)°   β=106.125(4)°   γ=90.000(5)°

C68H72F18N20O28S6Zn4,2(CF3O3S),2(O)

C68H72F18N20O28S6Zn4,2(CF3O3S),2(O)

Daniel J. HutchinsonLyall R. HantonStephen C. Moratti

Inorganic Chemistry (2013) 52, 2716-2728

a=11.7789(6)Å   b=14.4891(7)Å   c=17.0456(9)Å

α=92.881(3)°   β=108.955(3)°   γ=98.791(3)°

C34H37Ag2F3N11O7S,CF3O3S

C34H37Ag2F3N11O7S,CF3O3S

Daniel J. HutchinsonLyall R. HantonStephen C. Moratti

Inorganic Chemistry (2013) 52, 2716-2728

a=11.9718(4)Å   b=12.9367(5)Å   c=15.4355(6)Å

α=84.843(2)°   β=68.834(2)°   γ=79.247(2)°

C30H28Ag3.50F9N8O14S3

C30H28Ag3.50F9N8O14S3

Daniel J. HutchinsonLyall R. HantonStephen C. Moratti

Inorganic Chemistry (2013) 52, 2716-2728

a=11.7250(9)Å   b=13.5150(11)Å   c=16.5799(13)Å

α=104.351(4)°   β=94.273(4)°   γ=96.468(4)°

C33H35ClCu2N11O8,3(ClO4)

C33H35ClCu2N11O8,3(ClO4)

Daniel J. HutchinsonLyall R. HantonStephen C. Moratti

Inorganic Chemistry (2013) 52, 2716-2728

a=12.742(4)Å   b=14.056(4)Å   c=15.538(4)Å

α=111.517(10)°   β=103.767(11)°   γ=104.831(11)°

C87H105Ag4B4F16N35O14

C87H105Ag4B4F16N35O14

Daniel J. HutchinsonScott A. CameronLyall R. HantonStephen C. Moratti

Inorganic Chemistry (2012) 51, 5070-5081

a=15.7208(17)Å   b=14.6064(13)Å   c=22.919(2)Å

α=90.000(0)°   β=95.295(4)°   γ=90.000(0)°

C50H60Ag4N20O4,4(CF3O3S)

C50H60Ag4N20O4,4(CF3O3S)

Daniel J. HutchinsonScott A. CameronLyall R. HantonStephen C. Moratti

Inorganic Chemistry (2012) 51, 5070-5081

a=8.834(5)Å   b=12.8072(10)Å   c=15.3793(12)Å

α=97.165(4)°   β=92.266(4)°   γ=95.012(4)°

C42H48Ag2N16O4,CF3O3S,3(CH3NO2)

C42H48Ag2N16O4,CF3O3S,3(CH3NO2)

Daniel J. HutchinsonScott A. CameronLyall R. HantonStephen C. Moratti

Inorganic Chemistry (2012) 51, 5070-5081

a=14.5504(5)Å   b=29.2736(9)Å   c=25.1803(7)Å

α=90.00°   β=90.00°   γ=90.00°

C25H30Ag2N10O2,2(BF4)

C25H30Ag2N10O2,2(BF4)

Daniel J. HutchinsonScott A. CameronLyall R. HantonStephen C. Moratti

Inorganic Chemistry (2012) 51, 5070-5081

a=7.9175(15)Å   b=8.3277(18)Å   c=12.571(3)Å

α=80.108(7)°   β=77.305(7)°   γ=77.748(7)°

C22H28BF4N9O4Zn2,3(BF4),CH3,O

C22H28BF4N9O4Zn2,3(BF4),CH3,O

Daniel J. HutchinsonLyall R. HantonStephen C. Moratti

Inorganic Chemistry (2011) 50, 7637-7649

a=7.6091(7)Å   b=14.2283(15)Å   c=18.693(2)Å

α=111.154(4)°   β=91.646(4)°   γ=102.494(4)°

C21H26Cl4N8O19Pb2

C21H26Cl4N8O19Pb2

Daniel J. HutchinsonLyall R. HantonStephen C. Moratti

Inorganic Chemistry (2011) 50, 7637-7649

a=9.1759(18)Å   b=11.974(2)Å   c=16.043(3)Å

α=84.705(9)°   β=80.236(11)°   γ=78.353(9)°

C21H24Cl4N8O18Pb2

C21H24Cl4N8O18Pb2

Daniel J. HutchinsonLyall R. HantonStephen C. Moratti

Inorganic Chemistry (2011) 50, 7637-7649

a=9.8273(17)Å   b=12.010(2)Å   c=15.111(3)Å

α=75.586(8)°   β=73.672(9)°   γ=76.293(8)°

C24H26F9N8O12Pb2S3,CF3O3S

C24H26F9N8O12Pb2S3,CF3O3S

Daniel J. HutchinsonLyall R. HantonStephen C. Moratti

Inorganic Chemistry (2011) 50, 7637-7649

a=10.1195(9)Å   b=12.6995(11)Å   c=17.7334(15)Å

α=71.677(4)°   β=73.808(4)°   γ=79.069(4)°

C21H32N8O6Zn2,C4H10O,4(CF3O3S)

C21H32N8O6Zn2,C4H10O,4(CF3O3S)

Daniel J. HutchinsonLyall R. HantonStephen C. Moratti

Inorganic Chemistry (2011) 50, 7637-7649

a=13.5655(13)Å   b=14.274(3)Å   c=14.2890(15)Å

α=101.348(7)°   β=113.591(5)°   γ=98.629(7)°

C84H96Cl4N32O24Pb4,4(ClO4)

C84H96Cl4N32O24Pb4,4(ClO4)

Daniel J. HutchinsonLyall R. HantonStephen C. Moratti

Inorganic Chemistry (2011) 50, 7637-7649

a=27.9354(13)Å   b=27.9354(13)Å   c=15.2254(8)Å

α=90.00°   β=90.00°   γ=90.00°

C21H24Cl1N8O6Pb1,1(ClO4),0.75(NO2),0.75(C)

C21H24Cl1N8O6Pb1,1(ClO4),0.75(NO2),0.75(C)

Daniel J. HutchinsonLyall R. HantonStephen C. Moratti

Inorganic Chemistry (2011) 50, 7637-7649

a=27.861(4)Å   b=27.861(4)Å   c=15.258(4)Å

α=90.00°   β=90.00°   γ=90.00°