Structures by: Inatomi T.

Total: 12

C37H44ClN4Ni,2(C4H8O)

C37H44ClN4Ni,2(C4H8O)

Inatomi, TakahiroFukahori, YukinoYamada, YujiIshikawa, RyutaKanegawa, ShinjiKoga, YujiMatsubara, Kouki

Catalysis Science & Technology (2019)

a=13.217(7)Å   b=20.737(10)Å   c=16.300(9)Å

α=90.0000°   β=112.083(9)°   γ=90.0000°

C37H44BrN4Ni,C4H8O,C4O

C37H44BrN4Ni,C4H8O,C4O

Inatomi, TakahiroFukahori, YukinoYamada, YujiIshikawa, RyutaKanegawa, ShinjiKoga, YujiMatsubara, Kouki

Catalysis Science & Technology (2019)

a=13.1252(19)Å   b=20.650(3)Å   c=16.188(3)Å

α=90.0000°   β=112.956(4)°   γ=90.0000°

C45H50N5Ni

C45H50N5Ni

Inatomi, TakahiroFukahori, YukinoYamada, YujiIshikawa, RyutaKanegawa, ShinjiKoga, YujiMatsubara, Kouki

Catalysis Science & Technology (2019)

a=14.185(10)Å   b=10.668(7)Å   c=25.257(17)Å

α=90.0000°   β=94.686(10)°   γ=90.0000°

2(C45H48BrN4Ni),C4H8O

2(C45H48BrN4Ni),C4H8O

Inatomi, TakahiroFukahori, YukinoYamada, YujiIshikawa, RyutaKanegawa, ShinjiKoga, YujiMatsubara, Kouki

Catalysis Science & Technology (2019)

a=12.620(3)Å   b=16.578(3)Å   c=20.317(4)Å

α=77.400(6)°   β=84.597(6)°   γ=86.947(8)°

C49H54N5Ni

C49H54N5Ni

Inatomi, TakahiroFukahori, YukinoYamada, YujiIshikawa, RyutaKanegawa, ShinjiKoga, YujiMatsubara, Kouki

Catalysis Science & Technology (2019)

a=11.812(3)Å   b=21.544(4)Å   c=16.480(4)Å

α=90.0000°   β=91.636(4)°   γ=90.0000°

C39H46N3Ni,C7

C39H46N3Ni,C7

Inatomi, TakahiroFukahori, YukinoYamada, YujiIshikawa, RyutaKanegawa, ShinjiKoga, YujiMatsubara, Kouki

Catalysis Science & Technology (2019)

a=29.913(4)Å   b=13.0870(11)Å   c=20.428(2)Å

α=90.0000°   β=99.079(5)°   γ=90.0000°

C51H58N5Ni,0.5(C6H6),C4H8O

C51H58N5Ni,0.5(C6H6),C4H8O

Inatomi, TakahiroFukahori, YukinoYamada, YujiIshikawa, RyutaKanegawa, ShinjiKoga, YujiMatsubara, Kouki

Catalysis Science & Technology (2019)

a=12.662(5)Å   b=12.701(5)Å   c=16.940(6)Å

α=72.520(13)°   β=78.286(13)°   γ=84.831(13)°

C37H30NO2P

C37H30NO2P

Nagahora, NoriyoshiGoto, ShokoInatomi, TakahiroTokumaru, HiroshiMatsubara, KoukiShioji, KoseiOkuma, Kentaro

The Journal of organic chemistry (2018) 83, 12 6373-6381

a=10.417(9)Å   b=10.557(9)Å   c=14.063(12)Å

α=91.010(5)°   β=106.752(18)°   γ=104.575(17)°

C61H79ClN4Ni2

C61H79ClN4Ni2

Matsubara, KoukiYamamoto, HitomiMiyazaki, SatoshiInatomi, TakahiroNonaka, KeitaKoga, YujiYamada, YujiVeiros, Luis F.Kirchner, Karl

Organometallics (2016) 36, 2 255

a=11.8561(14)Å   b=23.765(3)Å   c=20.443(2)Å

α=90.00°   β=106.4400(10)°   γ=90.00°

C61H79ClN4Ni2O

C61H79ClN4Ni2O

Matsubara, KoukiYamamoto, HitomiMiyazaki, SatoshiInatomi, TakahiroNonaka, KeitaKoga, YujiYamada, YujiVeiros, Luis F.Kirchner, Karl

Organometallics (2016) 36, 2 255

a=14.4923(9)Å   b=12.2789(7)Å   c=31.858(3)Å

α=90.0000°   β=99.114(4)°   γ=90.0000°

C67.8H85.4N4Ni2

C67.8H85.4N4Ni2

Matsubara, KoukiYamamoto, HitomiMiyazaki, SatoshiInatomi, TakahiroNonaka, KeitaKoga, YujiYamada, YujiVeiros, Luis F.Kirchner, Karl

Organometallics (2016) 36, 2 255

a=10.5339(16)Å   b=12.2953(16)Å   c=13.077(2)Å

α=65.614(9)°   β=82.275(11)°   γ=67.548(9)°

C59H75Cl4N5Ni2

C59H75Cl4N5Ni2

Matsubara, KoukiYamamoto, HitomiMiyazaki, SatoshiInatomi, TakahiroNonaka, KeitaKoga, YujiYamada, YujiVeiros, Luis F.Kirchner, Karl

Organometallics (2016) 36, 2 255

a=12.447(3)Å   b=14.799(4)Å   c=18.718(5)Å

α=73.690(18)°   β=71.29(2)°   γ=69.138(18)°