Structures by: Inabe T.
Total: 110
Quinuclidinium perrhenate
2(O2Re0.5),4(C2)
Nature Chemistry (2016) 8, 946-952
a=6.3881(11)Å b=6.3881(11)Å c=6.3881(11)Å
α=90° β=90° γ=90°
Quinuclidinium perrhenate
2(O2Re0.5),C7N1
Nature Chemistry (2016) 8, 946-952
a=6.360(2)Å b=6.360(2)Å c=6.360(2)Å
α=89.912(3)° β=89.912(3)° γ=89.912(3)°
Quinuclidinium perrhenate
O4Re,C7H14N
Nature Chemistry (2016) 8, 946-952
a=8.9571(9)Å b=5.9973(6)Å c=9.1546(9)Å
α=90° β=90° γ=90°
C76H56Co2KN20O4
C76H56Co2KN20O4
Crystals (2012) 2, 3 946-957
a=21.370(2)Å b=21.370(2)Å c=7.4607(8)Å
α=90.0000° β=90.0000° γ=90.0000°
C76H56Co2N20NaO4
C76H56Co2N20NaO4
Crystals (2012) 2, 3 946-957
a=21.163(4)Å b=21.163(4)Å c=7.4140(13)Å
α=90.0000° β=90.0000° γ=90.0000°
C88H52Cl4Fe2N16P
C88H52Cl4Fe2N16P
Journal of Materials Chemistry (2009) 19, 6 718
a=21.49(2)Å b=21.49(2)Å c=7.472(10)Å
α=90.0000° β=90.0000° γ=90.0000°
C88H52Br4Fe2N16P
C88H52Br4Fe2N16P
Journal of Materials Chemistry (2009) 19, 6 718
a=21.410(2)Å b=21.410(2)Å c=7.5777(7)Å
α=90.0000° β=90.0000° γ=90.0000°
C68H46Cl2FeN10P
C68H46Cl2FeN10P
Journal of Materials Chemistry (2009) 19, 6 718
a=10.501(6)Å b=12.232(6)Å c=12.938(6)Å
α=85.71(3)° β=68.16(4)° γ=66.19(4)°
C33.33333H42CaN0.66667Ni2O10S20
C33.33333H42CaN0.66667Ni2O10S20
Journal of Materials Chemistry (2001) 11, 9 2118
a=12.4442(4)Å b=12.5299(4)Å c=26.872(1)Å
α=97.0670(7)° β=91.7234(8)° γ=97.214(1)°
Quinuclidinium bis(1,3-dithiol-2-thione-4,5-dithiolato)palladium at 298K
(C7H14N),2(C6PdS10)
Journal of Materials Chemistry (2001) 11, 9 2199
a=14.603(3)Å b=6.3722(11)Å c=36.335(6)Å
α=90.00° β=90.020(10)° γ=90.00°
Qinuclidinium bis(1,3-dithiol-2-thione-4,5-dithiolato)palladium at 150K
(C7H14N),2(C6PdS10)
Journal of Materials Chemistry (2001) 11, 9 2199
a=14.50(2)Å b=6.333(9)Å c=36.13(5)Å
α=90.00° β=90.14(10)° γ=90.00°
C28H32CaNi2O8S20
C28H32CaNi2O8S20
Journal of Materials Chemistry (2001) 11, 9 2118
a=19.872(1)Å b=19.7547(8)Å c=12.6242(6)Å
α=90° β=95.442(1)° γ=90°
C28H31CaN3Ni2O5S20
C28H31CaN3Ni2O5S20
Journal of Materials Chemistry (2001) 11, 9 2118
a=15.598(3)Å b=15.5975Å c=10.222(4)Å
α=90° β=90° γ=90°
C28H32CaO8Ni2S20
C28H32CaO8Ni2S20
Journal of Materials Chemistry (2001) 11, 9 2118
a=19.8366(2)Å b=19.5053(3)Å c=12.5358(4)Å
α=90° β=94.7610(2)° γ=90°
C52H27CoN11
C52H27CoN11
Journal of Materials Chemistry (2000) 10, 10 2266
a=9.864(2)Å b=12.475(4)Å c=8.827(2)Å
α=107.83(2)° β=93.02(2)° γ=102.30(2)°
C62H32Cl4CoN10
C62H32Cl4CoN10
Journal of Materials Chemistry (2000) 10, 10 2266
a=10.684(1)Å b=15.005(2)Å c=8.068(1)Å
α=92.371(7)° β=95.720(6)° γ=70.079(4)°
C40.5H26FeN11.5
C40.5H26FeN11.5
Journal of Materials Chemistry (2001) 11, 10 2493
a=13.9001(5)Å b=7.3319(2)Å c=16.3165(5)Å
α=90° β=90° γ=90°
C40.5H26CoN11.5
C40.5H26CoN11.5
Journal of Materials Chemistry (2001) 11, 10 2493
a=13.8706(6)Å b=7.3498(3)Å c=16.2958(7)Å
α=90° β=90° γ=90°
C41.5H30CoN10.5O
C41.5H30CoN10.5O
Journal of Materials Chemistry (2001) 11, 10 2493
a=13.6682(5)Å b=7.3102(2)Å c=16.3705(7)Å
α=90° β=90° γ=90°
C32H27Cl7MnS24
C32H27Cl7MnS24
Journal of Materials Chemistry (2001) 11, 9 2221
a=9.9182(5)Å b=29.591(2)Å c=10.1562(5)Å
α=90.0° β=109.443(2)° γ=90.0°
C92H52Fe2N20P
C92H52Fe2N20P
Journal of Materials Chemistry (2000) 10, 3 631
a=21.722(2)Å b=21.722(2)Å c=7.448(2)Å
α=90° β=90° γ=90°
C40.5H26FeN11.5
C40.5H26FeN11.5
Journal of Materials Chemistry (2001) 11, 10 2493
a=13.850(1)Å b=7.2494(4)Å c=16.155(1)Å
α=90° β=90° γ=90°
C92 H52 N20 Mn2 P
2(C34H16MnN10),C24H20P
Dalton transactions (Cambridge, England : 2003) (2017) 46, 6 1892-1897
a=21.7113(11)Å b=21.7113(11)Å c=7.4439(5)Å
α=90.00° β=90.00° γ=90.00°
0.25(C100H80Co4N20),C3H6O
0.25(C100H80Co4N20),C3H6O
Dalton transactions (Cambridge, England : 2003) (2017) 46, 13 4422-4429
a=11.7053(17)Å b=19.130(3)Å c=11.7373(17)Å
α=90° β=114.655(2)° γ=90°
C26H20CoN6,C24H20P,0.5(C3H6O),O
C26H20CoN6,C24H20P,0.5(C3H6O),O
Dalton transactions (Cambridge, England : 2003) (2017) 46, 13 4422-4429
a=12.0125(9)Å b=13.6844(10)Å c=14.8622(11)Å
α=65.6430(10)° β=69.3160(10)° γ=77.5240(10)°
C26H20CoN6
C26H20CoN6
Dalton transactions (Cambridge, England : 2003) (2017) 46, 13 4422-4429
a=8.6078(17)Å b=9.3943(18)Å c=13.337(3)Å
α=89.409(4)° β=81.068(4)° γ=76.910(3)°
C26H20CoN6,2(C2H3N)
C26H20CoN6,2(C2H3N)
Dalton transactions (Cambridge, England : 2003) (2017) 46, 13 4422-4429
a=12.9104(16)Å b=14.7785(18)Å c=14.7219(18)Å
α=90° β=114.3679(18)° γ=90°
CH6I3NSn
CH6I3NSn
Dalton transactions (Cambridge, England : 2003) (2011) 40, 20 5563-5568
a=6.2434(14)Å b=6.2434(14)Å c=6.2434(14)Å
α=90.0000° β=90.0000° γ=90.0000°
CH6I3NSn
CH6I3NSn
Dalton transactions (Cambridge, England : 2003) (2011) 40, 20 5563-5568
a=8.7271(8)Å b=8.7271(8)Å c=12.5022(15)Å
α=90.0000° β=90.0000° γ=90.0000°
C36H42Br2Cl3IS24
C36H42Br2Cl3IS24
Journal of Materials Chemistry (1999) 9, 11 2737
a=13.656(5)Å b=20.254(4)Å c=12.638(4)Å
α=104.75(2)° β=116.18(3)° γ=81.57(2)°
C39H42Cl3I3S24
C39H42Cl3I3S24
Journal of Materials Chemistry (1999) 9, 11 2737
a=13.653(2)Å b=20.303(3)Å c=12.677(1)Å
α=104.622(10)° β=116.501(7)° γ=81.65(1)°
C76H39FeN11O4
C76H39FeN11O4
Journal of Materials Chemistry (2010) 20, 21 4432
a=10.704(2)Å b=24.232(6)Å c=10.425(2)Å
α=99.45(1)° β=93.663(8)° γ=95.382(7)°
Bis(ethylenedithio)tetrathiafulvalene--2,3-dichloro-5,6-dicyano-<i>p</i>-benzoquinone (1/1)
C8Cl2N2O2,C10H8S8
Acta Crystallographica Section C (2013) 69, 4 400-402
a=6.5975(6)Å b=13.0254(10)Å c=13.3531(10)Å
α=103.739(2)° β=98.123(3)° γ=99.217(2)°
C32H24N8Ni
C32H24N8Ni
Chemistry of Materials (2014) 26, 2 993
a=14.752(3)Å b=4.7121(10)Å c=17.372(3)Å
α=90.0000° β=104.402(5)° γ=90.0000°
2(C6H2N2),2(C7H5)
2(C6H2N2),2(C7H5)
Chemistry of Materials (2015) 27, 12 4441
a=11.370(3)Å b=12.818(3)Å c=6.9180(17)Å
α=90.884(4)° β=107.171(4)° γ=94.998(4)°
C12H4N4,C14H10
C12H4N4,C14H10
Chemistry of Materials (2015) 27, 12 4441
a=11.5730(15)Å b=12.8479(16)Å c=6.9092(9)Å
α=90° β=107.053(2)° γ=90°
C12H4N4,C14H10
C12H4N4,C14H10
Chemistry of Materials (2015) 27, 12 4441
a=11.5276(3)Å b=12.9749(4)Å c=7.0126(2)Å
α=90° β=105.5838(14)° γ=90°
C8H24I4N2Sn
C8H24I4N2Sn
Chemistry of Materials (2007) 19, 25 6312
a=8.814(2)Å b=8.591(2)Å c=27.644(5)Å
α=90° β=90° γ=90°
C8H24I4N2Sn
C8H24I4N2Sn
Chemistry of Materials (2007) 19, 25 6312
a=8.9315(7)Å b=26.023(3)Å c=8.4082(7)Å
α=90° β=90° γ=90°
C5H16I4N2Sn
C5H16I4N2Sn
Chemistry of Materials (2007) 19, 25 6312
a=12.648(1)Å b=12.225(1)Å c=20.605(2)Å
α=90° β=97.434(2)° γ=90°
C16H32I4N2O4Sn
C16H32I4N2O4Sn
Chemistry of Materials (2007) 19, 25 6312
a=36.695(1)Å b=8.5068(3)Å c=8.7454(2)Å
α=90° β=90° γ=90°
C8H22I6N2Sn
C8H22I6N2Sn
Chemistry of Materials (2007) 19, 25 6312
a=8.950(1)Å b=8.392(1)Å c=15.393(2)Å
α=90° β=92.268(3)° γ=90°
C8H20I4N2O4Sn
C8H20I4N2O4Sn
Chemistry of Materials (2007) 19, 25 6312
a=8.8871(3)Å b=9.2148(3)Å c=24.1897(9)Å
α=90° β=90° γ=90°
C7H16I4N2Sn
C7H16I4N2Sn
Chemistry of Materials (2007) 19, 25 6312
a=6.4411(4)Å b=20.729(1)Å c=12.7965(8)Å
α=90° β=95.600(2)° γ=90°
C10H10I6N2Sn
C10H10I6N2Sn
Chemistry of Materials (2007) 19, 25 6312
a=8.7310(4)Å b=25.416(1)Å c=9.5516(6)Å
α=90° β=90° γ=90°
C65H52N2O27S24
C65H52N2O27S24
Crystal Growth & Design (2009) 9, 11 4830
a=16.596(6)Å b=9.602(4)Å c=24.775(11)Å
α=90.0000° β=91.26(3)° γ=90.0000°
C61H31N19
C61H31N19
Crystal Growth & Design (2014) 14, 11 5575
a=13.1547(9)Å b=13.6652(9)Å c=15.5920(10)Å
α=105.4713(19)° β=100.898(2)° γ=103.6797(18)°
C61H32N18
C61H32N18
Crystal Growth & Design (2014) 14, 11 5575
a=7.792(3)Å b=12.715(4)Å c=13.100(4)Å
α=86.007(14)° β=87.137(12)° γ=82.964(18)°
C61H32N18
C61H32N18
Crystal Growth & Design (2014) 14, 11 5575
a=7.7599(4)Å b=25.3409(12)Å c=13.0885(6)Å
α=90.0000° β=92.7802(13)° γ=90.0000°
C62H34N18
C62H34N18
Crystal Growth & Design (2014) 14, 11 5575
a=7.7633(17)Å b=13.078(4)Å c=13.081(4)Å
α=76.175(13)° β=88.07(2)° γ=87.743(13)°
C63H36N18
C63H36N18
Crystal Growth & Design (2014) 14, 11 5575
a=7.7658(17)Å b=13.274(4)Å c=25.224(5)Å
α=93.634(13)° β=95.231(10)° γ=90.757(10)°
C52H34N14
C52H34N14
Crystal Growth & Design (2014) 14, 11 5575
a=7.8494(17)Å b=9.803(3)Å c=14.557(4)Å
α=76.285(10)° β=82.750(7)° γ=81.523(11)°
C64H38N18
C64H38N18
Crystal Growth & Design (2014) 14, 11 5575
a=7.6612(15)Å b=13.068(4)Å c=14.039(4)Å
α=76.243(11)° β=76.680(16)° γ=80.966(12)°
C20H21N3NiO2S10
C20H21N3NiO2S10
Journal of the American Chemical Society (1999) 121, 8098-8103
a=11.647(4)Å b=11.986(3)Å c=12.047(6)Å
α=103.25(3)° β=106.01(3)° γ=109.91(2)°
C24H12N2Ni2S20
C24H12N2Ni2S20
Journal of the American Chemical Society (2012) 134, 18656-18666
a=20.879(8)Å b=7.466(3)Å c=24.181(8)Å
α=90.0000° β=105.549(6)° γ=90.0000°
2(Cl2Fe0.5),0.25(C12H36N4),C
2(Cl2Fe0.5),0.25(C12H36N4),C
Journal of the American Chemical Society (2017)
a=8.964(9)Å b=9.618(9)Å c=14.158(13)Å
α=90° β=90° γ=90°
Cl4Fe,0.5(C8H12N2)
Cl4Fe,0.5(C8H12N2)
Journal of the American Chemical Society (2017)
a=14.268(5)Å b=6.442(2)Å c=6.451(2)Å
α=90° β=90° γ=90°
2(Cl2Fe0.5),C4H9N
2(Cl2Fe0.5),C4H9N
Journal of the American Chemical Society (2017)
a=7.218(8)Å b=9.019(9)Å c=9.362(10)Å
α=90° β=90° γ=90°
Cl4Fe,C4H12N
Cl4Fe,C4H12N
Journal of the American Chemical Society (2017)
a=6.4415(15)Å b=13.071(3)Å c=14.001(3)Å
α=90° β=90° γ=90°
4(Cl1Fe0.25),4(C1N0.25)
4(Cl1Fe0.25),4(C1N0.25)
Journal of the American Chemical Society (2017)
a=6.81(3)Å b=6.81(3)Å c=6.81(3)Å
α=90° β=90° γ=90°
Br4C8O3
Br4C8O3
Journal of the American Chemical Society (2015) 137, 13 4477-4486
a=12.6749(10)Å b=6.1713(5)Å c=13.4149(11)Å
α=90° β=90.8147(12)° γ=90°
Br4C8O3
Br4C8O3
Journal of the American Chemical Society (2015) 137, 13 4477-4486
a=12.5164(9)Å b=6.0894(4)Å c=13.3977(10)Å
α=90° β=90.1220(11)° γ=90°
Br4C8O3,C12H18
Br4C8O3,C12H18
Journal of the American Chemical Society (2015) 137, 13 4477-4486
a=9.1304(8)Å b=13.7261(12)Å c=9.4089(8)Å
α=90° β=118.5970(11)° γ=90°
Br4C8O3,C12H18
Br4C8O3,C12H18
Journal of the American Chemical Society (2015) 137, 13 4477-4486
a=9.0493(7)Å b=13.3796(10)Å c=9.3465(7)Å
α=90° β=118.3590(9)° γ=90°
Br4C8O3,1(C24H12)
Br4C8O3,1(C24H12)
Journal of the American Chemical Society (2015) 137, 13 4477-4486
a=7.9540(7)Å b=9.5826(8)Å c=16.2147(14)Å
α=90° β=89.1480(10)° γ=90°
Br4C8O3,2(C10H6)
Br4C8O3,2(C10H6)
Journal of the American Chemical Society (2015) 137, 13 4477-4486
a=10.0091(8)Å b=10.0755(8)Å c=12.5454(10)Å
α=85.0856(13)° β=73.6923(12)° γ=69.0129(12)°
Br4C8O3,2(C10H6)
Br4C8O3,2(C10H6)
Journal of the American Chemical Society (2015) 137, 13 4477-4486
a=9.9896(9)Å b=10.0635(9)Å c=12.5388(11)Å
α=85.3160(10)° β=73.8500(10)° γ=69.0270(10)°
Br4C8O3,2(C10H6)
Br4C8O3,2(C10H6)
Journal of the American Chemical Society (2015) 137, 13 4477-4486
a=9.9226(8)Å b=9.9944(8)Å c=12.4828(10)Å
α=85.7400(11)° β=73.8330(11)° γ=68.8150(11)°
C18H26KN2O4NiS10
C18H26KN2O4NiS10
Inorganic Chemistry (2000) 39, 870-871
a=8.920(3)Å b=10.911(2)Å c=8.373(1)Å
α=106.86(1)° β=97.37(2)° γ=92.28(2)°
C18H26N2O4NiRbS10
C18H26N2O4NiRbS10
Inorganic Chemistry (2000) 39, 870-871
a=8.815(5)Å b=11.04(2)Å c=8.51(1)Å
α=107.8(1)° β=97.53(9)° γ=91.5(1)°
C16H4Ag1Cl4N8
C16H4Ag1Cl4N8
Crystal Growth & Design (2011) 11, 2 501
a=22.3848(17)Å b=22.3848(17)Å c=3.7128(3)Å
α=90° β=90° γ=90°
C16H4Ag1Cl4N8
C16H4Ag1Cl4N8
Crystal Growth & Design (2011) 11, 2 501
a=22.4002(19)Å b=22.4002(19)Å c=3.7333(3)Å
α=90° β=90° γ=90°
C16H4Ag1Cl4N8
C16H4Ag1Cl4N8
Crystal Growth & Design (2011) 11, 2 501
a=22.3770(11)Å b=22.3770(11)Å c=3.7289(2)Å
α=90° β=90° γ=90°
C40H30N2
C40H30N2
Crystal Growth & Design (2005) 5, 6 2256
a=17.699(3)Å b=18.111(3)Å c=18.844(3)Å
α=111.183(2)° β=93.828(1)° γ=102.130(2)°
C40H30N2
C40H30N2
Crystal Growth & Design (2005) 5, 6 2256
a=17.719(2)Å b=18.116(2)Å c=18.852(3)Å
α=111.270(2)° β=93.800(2)° γ=102.006(2)°
C40H30N2
C40H30N2
Crystal Growth & Design (2005) 5, 6 2256
a=17.767(4)Å b=18.158(5)Å c=18.879(5)Å
α=111.220(5)° β=93.872(4)° γ=101.834(2)°
C40H30N2
C40H30N2
Crystal Growth & Design (2005) 5, 6 2256
a=17.752(4)Å b=18.146(5)Å c=18.871(5)Å
α=111.246(5)° β=93.850(4)° γ=101.827(2)°
C40H30N2
C40H30N2
Crystal Growth & Design (2005) 5, 6 2256
a=17.814(5)Å b=18.219(6)Å c=18.881(6)Å
α=111.085(5)° β=94.033(5)° γ=102.044(3)°
C40H30N2
C40H30N2
Crystal Growth & Design (2005) 5, 6 2256
a=9.438(2)Å b=17.227(4)Å c=17.804(4)Å
α=74.978(9)° β=85.936(13)° γ=80.331(12)°
C16H24I4N2Sn
C16H24I4N2Sn
Chemistry of Materials (2007) 19, 25 6312
a=32.299(4)Å b=6.1042(7)Å c=6.1378(7)Å
α=90° β=93.961(4)° γ=90°
C12H14N2,3(C12H4N4)
C12H14N2,3(C12H4N4)
Crystal Growth & Design (2014) 14, 11 5575
a=8.0675(9)Å b=8.0934(9)Å c=15.5631(18)Å
α=83.1512(14)° β=76.1582(14)° γ=76.0042(14)°
C20H21AuN3O2S10
C20H21AuN3O2S10
Journal of the American Chemical Society (1999) 121, 8098-8103
a=14.420(5)Å b=16.544(4)Å c=12.741(3)Å
α=92.71(2)° β=100.13(2)° γ=103.61(2)°
Br4C8O3,C24H12
Br4C8O3,C24H12
Journal of the American Chemical Society (2015) 137, 13 4477-4486
a=7.8361(5)Å b=9.6699(7)Å c=15.7801(11)Å
α=90° β=90.2420(10)° γ=90°
Br4C8O3,C20H12
Br4C8O3,C20H12
Journal of the American Chemical Society (2015) 137, 13 4477-4486
a=7.7233(3)Å b=9.1834(3)Å c=9.1909(3)Å
α=66.7020(10)° β=84.4390(10)° γ=73.0640(10)°
Br4C8O3,2(C10H6)
Br4C8O3,2(C10H6)
Journal of the American Chemical Society (2015) 137, 13 4477-4486
a=9.9647(8)Å b=10.0419(9)Å c=12.5208(11)Å
α=85.4641(13)° β=73.8886(12)° γ=68.9570(12)°
C40H32NaNi4O8S40
C40H32NaNi4O8S40
Inorganic Chemistry (2000) 39, 2645-2651
a=8.055(6)Å b=11.23(1)Å c=41.97(1)Å
α=90° β=91.63(8)° γ=90°
C40H32NaNi4O8S40
C40H32NaNi4O8S40
Inorganic Chemistry (2000) 39, 2645-2651
a=8.068(6)Å b=11.084(4)Å c=41.711(5)Å
α=90° β=92.53(4)° γ=90°
C40H32KNi4O8S40
C40H32KNi4O8S40
Inorganic Chemistry (2000) 39, 2645-2651
a=11.420(2)Å b=41.398(6)Å c=8.036(3)Å
α=90° β=90° γ=90°
C40H32Ni4O8RbS40
C40H32Ni4O8RbS40
Inorganic Chemistry (2000) 39, 2645-2651
a=11.548(4)Å b=41.604(7)Å c=7.939(6)Å
α=90° β=90° γ=90°
C30H26NNi3O4S30
C30H26NNi3O4S30
Inorganic Chemistry (2000) 39, 2645-2651
a=8.793(7)Å b=7.537(6)Å c=43.701(5)Å
α=90° β=94.19(3)° γ=90°
2(C3H2S2),2(C3Cl2O),2(C14H8N2)
2(C3H2S2),2(C3Cl2O),2(C14H8N2)
The journal of physical chemistry letters (2020) 1336
a=7.5963(4)Å b=7.6826(4)Å c=30.6464(17)Å
α=85.5932(8)° β=89.6875(9)° γ=88.4480(8)°
2(C3H2S2),2(C3Cl2O),2(C14H8N2)
2(C3H2S2),2(C3Cl2O),2(C14H8N2)
The journal of physical chemistry letters (2020) 1336
a=7.5923(4)Å b=7.6803(4)Å c=30.6429(17)Å
α=85.5655(8)° β=89.7179(9)° γ=88.4239(8)°
2(C3H2S2),2(C3Cl2O),2(C14H8N2)
2(C3H2S2),2(C3Cl2O),2(C14H8N2)
The journal of physical chemistry letters (2020) 1336
a=7.5852(5)Å b=7.6749(5)Å c=30.6240(18)Å
α=85.5563(9)° β=89.7552(10)° γ=88.3859(9)°
2(C3H2S2),2(C3Cl2O),2(C14H8N2)
2(C3H2S2),2(C3Cl2O),2(C14H8N2)
The journal of physical chemistry letters (2020) 1336
a=7.5747(4)Å b=7.6588(4)Å c=30.5803(16)Å
α=85.7079(8)° β=89.8361(9)° γ=88.1942(8)°
2(C3H2S2),2(C3Cl2O),2(C14H8N2)
2(C3H2S2),2(C3Cl2O),2(C14H8N2)
The journal of physical chemistry letters (2020) 1336
a=7.5681(4)Å b=7.6518(4)Å c=30.5589(16)Å
α=85.7256(8)° β=89.8676(9)° γ=88.1423(8)°
2(C3H2S2),2(C3Cl2O),2(C14H8N2)
2(C3H2S2),2(C3Cl2O),2(C14H8N2)
The journal of physical chemistry letters (2020) 1336
a=7.5454(4)Å b=7.6338(4)Å c=30.5119(16)Å
α=85.5906(7)° β=89.9846(8)° γ=88.0361(8)°
C6H4S4,2(C6Cl4O2),C20H12
C6H4S4,2(C6Cl4O2),C20H12
The journal of physical chemistry letters (2020) 1336
a=7.6224(5)Å b=7.6188(6)Å c=15.8758(12)Å
α=97.7456(12)° β=93.2272(12)° γ=92.4714(12)°
C6H4S4,3(C6Cl4O2),2(C12H10)
C6H4S4,3(C6Cl4O2),2(C12H10)
The journal of physical chemistry letters (2020) 1336
a=7.1814(6)Å b=7.6740(6)Å c=21.6396(17)Å
α=96.1080(10)° β=98.5800(10)° γ=92.3400(10)°
C6H4S4,2(C6Cl4O2),C20H12
C6H4S4,2(C6Cl4O2),C20H12
The journal of physical chemistry letters (2020) 1336
a=7.6001(5)Å b=15.2128(11)Å c=17.0597(12)Å
α=67.0648(11)° β=82.4814(12)° γ=87.1754(12)°
C6H4S4,C6Cl4O2,2(C14H8N2)
C6H4S4,C6Cl4O2,2(C14H8N2)
The journal of physical chemistry letters (2020) 1336
a=7.5310(4)Å b=15.2200(8)Å c=30.7947(16)Å
α=80.4150(10)° β=89.4400(10)° γ=88.1110(10)°