Structures by: Chang S.
Total: 210
C42H81As2CoK5Mo12N6O74
C42H81As2CoK5Mo12N6O74
Catalysis Science & Technology (2019)
a=11.6422(2)Å b=12.1336(2)Å c=17.7687(3)Å
α=76.6610(10)° β=89.6320(10)° γ=84.5510(10)°
C42H83As2K5Mo12N6NiO75
C42H83As2K5Mo12N6NiO75
Catalysis Science & Technology (2019)
a=11.6585(5)Å b=12.1103(5)Å c=17.7420(7)Å
α=76.859(2)° β=89.702(3)° γ=84.663(3)°
C42H86CoCs4Mo12N6Na2O78Te2
C42H86CoCs4Mo12N6Na2O78Te2
Catalysis Science & Technology (2019)
a=11.7267(12)Å b=12.4654(13)Å c=18.6945(19)Å
α=74.384(4)° β=85.990(4)° γ=84.238(4)°
C16H78As2Co2Mo12N4O75Rb2
C16H78As2Co2Mo12N4O75Rb2
Catalysis Science & Technology (2019)
a=13.8787(3)Å b=23.7424(5)Å c=15.8044(3)Å
α=90° β=120.0320(10)° γ=90°
C16H82As2Mo12N4O77Rb2Zn2
C16H82As2Mo12N4O77Rb2Zn2
Catalysis Science & Technology (2019)
a=13.8717(9)Å b=23.7484(13)Å c=15.8204(9)Å
α=90° β=119.884(4)° γ=90°
C42H85As2K5MnMo12N6O76
C42H85As2K5MnMo12N6O76
Catalysis Science & Technology (2019)
a=11.6211(5)Å b=12.0930(5)Å c=17.7264(7)Å
α=76.5010(10)° β=89.8460(10)° γ=84.7250(10)°
C42H81As2K5Mo12N6O74Zn
C42H81As2K5Mo12N6O74Zn
Catalysis Science & Technology (2019)
a=11.6516(11)Å b=12.1230(12)Å c=17.7391(17)Å
α=76.692(2)° β=89.874(2)° γ=84.635(2)°
C42H70Cs4K2Mo12N6NiO70Te2
C42H70Cs4K2Mo12N6NiO70Te2
Catalysis Science & Technology (2019)
a=11.686(9)Å b=12.336(10)Å c=18.569(15)Å
α=75.760(14)° β=86.017(13)° γ=84.106(12)°
C28H33F3IrNO
C28H33F3IrNO
Nature Chemistry (2018) 10, 218-224
a=15.215(2)Å b=11.5219(18)Å c=29.439(5)Å
α=90.00° β=90.00° γ=90.00°
C23H26Br2O2
C23H26Br2O2
Organic & biomolecular chemistry (2018) 16, 13 2239-2247
a=7.5979(5)Å b=14.0001(10)Å c=19.6290(12)Å
α=90.00° β=90.00° γ=90.00°
C20H17NO5S
C20H17NO5S
Organic letters (2016) 18, 1 68-71
a=8.6285(8)Å b=12.7114(12)Å c=16.7840(17)Å
α=90.00° β=101.358(4)° γ=90.00°
C18H17NO5
C18H17NO5
Organic letters (2016) 18, 1 68-71
a=21.3292(8)Å b=8.2239(3)Å c=18.2075(7)Å
α=90.00° β=91.151(2)° γ=90.00°
C20H22N2O3S
C20H22N2O3S
Organic letters (2016) 18, 8 1892-1895
a=13.5634(4)Å b=9.0940(3)Å c=15.4845(4)Å
α=90.00° β=100.4945(11)° γ=90.00°
C25H35NO2SSi
C25H35NO2SSi
Organic letters (2017) 19, 1 190-193
a=9.9367(5)Å b=11.6098(6)Å c=12.8011(6)Å
α=104.929(2)° β=105.574(2)° γ=111.041(2)°
C16H11BrN2O3
C16H11BrN2O3
Chem. Sci. (2016) 7, 8 5362
a=7.593(3)Å b=11.744(4)Å c=16.592(5)Å
α=90.00° β=99.277(7)° γ=90.00°
C13H10N2O2S
C13H10N2O2S
Organic letters (2015) 17, 3 660-663
a=11.9124(16)Å b=7.5041(10)Å c=14.670(2)Å
α=90.00° β=111.533(5)° γ=90.00°
C13H10N4O
C13H10N4O
Organic letters (2015) 17, 3 660-663
a=6.9373(6)Å b=8.2261(7)Å c=9.7516(8)Å
α=85.814(4)° β=78.171(4)° γ=89.197(4)°
C14H11N5
C14H11N5
Organic letters (2015) 17, 3 660-663
a=7.9667(3)Å b=8.6666(4)Å c=9.6847(4)Å
α=109.198(2)° β=107.554(2)° γ=92.006(2)°
C19H22N2O4
C19H22N2O4
Organic letters (2014) 16, 12 3328-3331
a=7.297(2)Å b=12.192(4)Å c=19.971(6)Å
α=90.00° β=94.898(4)° γ=90.00°
C24H25F3IrNO2,C2H4O2
C24H25F3IrNO2,C2H4O2
Organic letters (2014) 16, 12 3328-3331
a=16.4790(8)Å b=8.8550(4)Å c=17.7803(9)Å
α=90.00° β=103.143(2)° γ=90.00°
C20H20N2O2
C20H20N2O2
Organic letters (2014) 16, 12 3328-3331
a=9.5080(4)Å b=10.4245(4)Å c=17.1939(7)Å
α=90.00° β=98.3970(17)° γ=90.00°
Lithium Manganese Oxide (0.05/2/4)
Li0.05Mn2O4
RIST Yongu Nonmun (RIST Research Papers) (1997) 11, 622-628
a=8.0445Å b=8.0445Å c=8.0445Å
α=90.° β=90.° γ=90.°
Lithium Manganese(III) Manganese(IV) Oxide
LiMn2O4
RIST Yongu Nonmun (RIST Research Papers) (1997) 11, 622-628
a=8.2363Å b=8.2363Å c=8.2363Å
α=90.° β=90.° γ=90.°
C21H30BrN2Rh
C21H30BrN2Rh
Organic letters (2011) 13, 9 2368-2371
a=9.7809(4)Å b=15.4141(6)Å c=13.4965(5)Å
α=90.00° β=97.7140(10)° γ=90.00°
C10H10N2O2S
C10H10N2O2S
Organic letters (2004) 6, 22 4109-4112
a=6.360(13)Å b=7.68(3)Å c=14.36(4)Å
α=89.06(13)° β=79.77(17)° γ=73.49(13)°
Complex4
C17H28ClN2Rh
Organic letters (2010) 12, 7 1640-1643
a=10.7478(2)Å b=12.6636(3)Å c=26.7573(6)Å
α=90.00° β=90.00° γ=90.00°
C13H39N24O13
C13H39N24O13
Chemical communications (Cambridge, England) (2016) 52, 84 12470-12473
a=11.1811(4)Å b=11.6175(5)Å c=14.5096(6)Å
α=70.505(2)° β=78.122(2)° γ=74.189(2)°
C19H13NO4
C19H13NO4
Chemical communications (Cambridge, England) (2016) 52, 84 12470-12473
a=10.7549(6)Å b=7.0492(4)Å c=19.1664(12)Å
α=90.00° β=102.500(2)° γ=90.00°
C23H21NO3
C23H21NO3
Chemical communications (Cambridge, England) (2016) 52, 84 12470-12473
a=8.6755(7)Å b=10.6916(10)Å c=11.4390(9)Å
α=69.968(8)° β=73.363(7)° γ=72.428(7)°
C20H16BrNO3
C20H16BrNO3
Chemical communications (Cambridge, England) (2016) 52, 84 12470-12473
a=4.2880(5)Å b=27.2739(16)Å c=14.6976(9)Å
α=90.00° β=90.213(8)° γ=90.00°
C19H20N2O3
C19H20N2O3
Chem. Commun. (2017)
a=17.4957(4)Å b=13.0591(4)Å c=16.2596(5)Å
α=90.00° β=113.4471(11)° γ=90.00°
DB- 0276
C20H19BrN2O2
Chem. Commun. (2017)
a=9.5310(5)Å b=9.5367(4)Å c=19.5389(9)Å
α=90° β=93.809(2)° γ=90°
C13H20N2O2SZn
C13H20N2O2SZn
Chemical Communications (2001) 22 2396
a=8.3772(4)Å b=15.7976(8)Å c=11.6276(6)Å
α=90.00° β=93.0170(10)° γ=90.00°
C13H22N2SZn
C13H22N2SZn
Chemical Communications (2001) 22 2396
a=7.9486(7)Å b=15.0809(15)Å c=12.1088(12)Å
α=90.00° β=90.958(2)° γ=90.00°
C11H17NO5Pb
C11H17NO5Pb
Chem.Commun. (2015) 51, 13166
a=14.4445(6)Å b=14.4445(6)Å c=34.0453(10)Å
α=90° β=90° γ=120°
6-methyl-8-(4-methylphenylsulfonamido)quinoline N-oxide
C17H16N2O3S
Chem.Commun. (2015) 51, 7035
a=26.8782(11)Å b=8.2244(3)Å c=19.4674(8)Å
α=90.00° β=132.6436(12)° γ=90.00°
Cyclophanetriene
C46H43Cl3S6
Chem.Commun. (2015) 51, 9113
a=9.4165(4)Å b=19.7949(7)Å c=45.5880(19)Å
α=90.00° β=90.00° γ=90.00°
3',5'-Diethyl-2,2':6',2''-terpyridine
C19H21N3
Chemical communications (Cambridge, England) (2016) 52, 15 3159-3162
a=21.0859(12)Å b=8.8941(5)Å c=8.6908(5)Å
α=90.00° β=110.4477(18)° γ=90.00°
3',5'-Bis(2-cyclohexylethyl)-2,2':6',2''-terpyridine
C31H39N3
Chemical communications (Cambridge, England) (2016) 52, 15 3159-3162
a=30.5673(18)Å b=9.9939(5)Å c=8.7408(6)Å
α=90.00° β=106.271(2)° γ=90.00°
C20H148As16Co4N20O118V28
C20H148As16Co4N20O118V28
Dalton Transactions (2008) 17 2335-2345
a=16.422(3)Å b=25.150(5)Å c=18.803(4)Å
α=90.00° β=109.36(3)° γ=90.00°
C32H54As8N12O41V12Zn4
C32H54As8N12O41V12Zn4
Dalton Transactions (2008) 17 2335-2345
a=13.113(3)Å b=28.739(6)Å c=39.885(8)Å
α=90.00° β=90.00° γ=90.00°
C76H108As8Cd3N16O63V13
C76H108As8Cd3N16O63V13
Dalton Transactions (2008) 17 2335-2345
a=19.643(4)Å b=14.539(3)Å c=21.112(4)Å
α=90.00° β=95.60(3)° γ=90.00°
C42H156As16N30Ni5O98V28
C42H156As16N30Ni5O98V28
Dalton Transactions (2008) 17 2335-2345
a=15.277(3)Å b=21.413(4)Å c=25.747(5)Å
α=85.44(3)° β=75.28(3)° γ=85.72(3)°
C22H57As8Cd3N12O45.5V13
C22H57As8Cd3N12O45.5V13
Dalton Transactions (2008) 17 2335-2345
a=25.291(5)Å b=28.749(6)Å c=20.030(4)Å
α=90.00° β=90.00° γ=90.00°
C30H18F4IrN7O
C30H18F4IrN7O
Dalton Transactions (2008) 35 4732-4741
a=21.982(11)Å b=30.270(15)Å c=14.317(7)Å
α=90.00° β=127.848(7)° γ=90.00°
C28H20F4IrN5O
C28H20F4IrN5O
Dalton Transactions (2008) 35 4732-4741
a=11.572(2)Å b=9.523(2)Å c=22.409(5)Å
α=90.00° β=96.012(4)° γ=90.00°
C30H24F4IrN5O3
C30H24F4IrN5O3
Dalton Transactions (2008) 35 4732-4741
a=10.6643(10)Å b=11.5990(10)Å c=12.6823(11)Å
α=63.5710(10)° β=89.299(2)° γ=89.267(2)°
PST-5
C26.72N6.68O77.45Si36
RSC Adv. (2017) 7, 61 38631
a=10.2796(7)Å b=36.643(3)Å c=10.8918(8)Å
α=90° β=90° γ=90°
C20H18N2O12Tb
C20H18N2O12Tb
RSC Adv. (2015)
a=29.4783(15)Å b=29.4783(15)Å c=14.1301(8)Å
α=90.00° β=90.00° γ=120.00°
C18H45Ce2N3O59.5PW11
C18H45Ce2N3O59.5PW11
Dalton transactions (Cambridge, England : 2003) (2018) 47, 27 9079-9089
a=13.0263(13)Å b=14.3304(14)Å c=21.410(2)Å
α=96.253(2)° β=91.877(2)° γ=95.276(2)°
C18H59La2N3O66.5PW11
C18H59La2N3O66.5PW11
Dalton transactions (Cambridge, England : 2003) (2018) 47, 27 9079-9089
a=13.0114(5)Å b=14.3598(6)Å c=21.4373(8)Å
α=96.428(2)° β=91.620(2)° γ=95.623(2)°
C24H54KN4O65PSm2Ti2W10
C24H54KN4O65PSm2Ti2W10
Dalton transactions (Cambridge, England : 2003) (2018) 47, 27 9079-9089
a=21.889(4)Å b=30.183(6)Å c=15.327(3)Å
α=90° β=133.421(2)° γ=90°
C24H60Ce2KN4O68PTi2W10
C24H60Ce2KN4O68PTi2W10
Dalton transactions (Cambridge, England : 2003) (2018) 47, 27 9079-9089
a=21.8889(3)Å b=30.2502(5)Å c=15.2713(4)Å
α=90° β=133.3600(10)° γ=90°
C24H62KN4Nd2O69PTi2W10
C24H62KN4Nd2O69PTi2W10
Dalton transactions (Cambridge, England : 2003) (2018) 47, 27 9079-9089
a=21.916(13)Å b=30.097(19)Å c=15.243(9)Å
α=90° β=133.528(7)° γ=90°
C21H49.5KN3.5Nd2O62PW11
C21H49.5KN3.5Nd2O62PW11
Dalton transactions (Cambridge, England : 2003) (2018) 47, 27 9079-9089
a=13.0716(6)Å b=14.3465(7)Å c=21.2358(11)Å
α=84.449(3)° β=89.313(3)° γ=84.531(3)°
C42H75Cs4KMo12N6O72Te2Zn
C42H75Cs4KMo12N6O72Te2Zn
Catalysis Science & Technology (2019)
a=11.6855(4)Å b=12.3860(6)Å c=18.6191(8)Å
α=74.699(3)° β=85.651(3)° γ=83.954(3)°
C42H83Cs4KMnMo12N6O76Te2
C42H83Cs4KMnMo12N6O76Te2
Catalysis Science & Technology (2019)
a=11.651(3)Å b=12.303(4)Å c=18.630(5)Å
α=74.094(12)° β=85.386(13)° γ=84.132(12)°
C16H71As2K2Mn2Mo12N4NaO72
C16H71As2K2Mn2Mo12N4NaO72
Catalysis Science & Technology (2019)
a=13.702(2)Å b=23.542(3)Å c=15.546(2)Å
α=90° β=119.466(11)° γ=90°
C16H99As2Mo12N4NaNi2O86Rb2
C16H99As2Mo12N4NaNi2O86Rb2
Catalysis Science & Technology (2019)
a=13.8420(4)Å b=23.8125(8)Å c=14.9785(6)Å
α=90° β=113.996(2)° γ=90°
C36H36Cl2N8Ni24(ClO4)2(C6H16N)
C36H36Cl2N8Ni24(ClO4)2(C6H16N)
Acta Crystallographica Section C (1999) 55, 8 1236-1238
a=11.511(4)Å b=22.022(3)Å c=12.521(2)Å
α=90° β=107.71(2)° γ=90°
Diaquabis(2,2'-biimidazole)cobalt(II) dichloride
C12H16CoN8O22,2(Cl)
Acta Crystallographica Section E (2008) 64, 2 m308-m308
a=22.037(3)Å b=12.5321(17)Å c=9.6421(13)Å
α=90.00° β=95.848(2)° γ=90.00°
C18H14N2O5
C18H14N2O5
ACS Catalysis (2020) 10, 9 5023-5029
a=7.4602(8)Å b=7.7802(9)Å c=14.1269(15)Å
α=92.011(4)° β=102.586(4)° γ=97.486(4)°
C12H9BrCl3NO2
C12H9BrCl3NO2
ACS Catalysis (2020) 10, 9 5023-5029
a=11.9493(17)Å b=6.9494(9)Å c=17.493(3)Å
α=90° β=104.384(5)° γ=90°
C17H14N2O3
C17H14N2O3
ACS Catalysis (2020) 10, 9 5023-5029
a=7.5628(17)Å b=16.969(4)Å c=11.191(2)Å
α=90° β=105.5627(19)° γ=90°
C16H11ClN2O3
C16H11ClN2O3
ACS Catalysis (2020) 10, 9 5023-5029
a=7.4538(3)Å b=16.3766(7)Å c=12.0863(5)Å
α=90° β=106.556(2)° γ=90°
C13H24N2O3
C13H24N2O3
ACS Catalysis (2016) 5922
a=17.0431(6)Å b=25.6881(9)Å c=10.2924(3)Å
α=90° β=90.010(1)° γ=90°
C36H45Cl2Cu4N28O50PW12
C36H45Cl2Cu4N28O50PW12
ACS applied materials & interfaces (2019) 11, 41 37908-37919
a=10.8516(2)Å b=12.9946(3)Å c=27.6264(7)Å
α=90° β=99.2120(10)° γ=90°
C24H26Cl3Cu17N36O41PW12
C24H26Cl3Cu17N36O41PW12
ACS applied materials & interfaces (2019) 11, 41 37908-37919
a=20.880(3)Å b=20.543(3)Å c=20.654(3)Å
α=90° β=113.765(3)° γ=90°
C17H44AsK2Mo6NNiO42
C17H44AsK2Mo6NNiO42
ACS Catalysis (2018) 8, 7 6062
a=11.9612(4)Å b=12.5318(3)Å c=17.1943(4)Å
α=76.4990(10)° β=74.053(2)° γ=76.535(2)°
C17H39AsK2MnMo6NO40
C17H39AsK2MnMo6NO40
ACS Catalysis (2018) 8, 7 6062
a=12.2865(7)Å b=12.6065(7)Å c=17.2145(11)Å
α=76.319(3)° β=73.933(3)° γ=76.064(3)°
C18H87As2Co0.5K3Mo12N6NaO77.5
C18H87As2Co0.5K3Mo12N6NaO77.5
ACS Catalysis (2018) 8, 7 6062
a=16.1055(6)Å b=18.5246(7)Å c=19.0707(8)Å
α=75.701(2)° β=65.877(2)° γ=64.845(2)°
C124H186F24Ir4N12O25S8
C124H186F24Ir4N12O25S8
ACS Catalysis (2015) 5, 11 6665
a=11.1326(5)Å b=28.0168(14)Å c=13.6059(6)Å
α=90.00° β=96.8149(16)° γ=90.00°
C22H23F3IrNO3
C22H23F3IrNO3
ACS central science (2018) 4, 6 768-775
a=9.2770(3)Å b=9.4109(4)Å c=15.3550(7)Å
α=101.755(2)° β=103.438(2)° γ=106.361(2)°
C18H18N2O3S
C18H18N2O3S
ACS central science (2018) 4, 6 768-775
a=17.1548(8)Å b=5.2806(2)Å c=18.3203(8)Å
α=90° β=97.2991(19)° γ=90°
C29H30F3IrN2O5S
C29H30F3IrN2O5S
ACS central science (2018) 4, 6 768-775
a=9.6211(3)Å b=10.9933(4)Å c=14.5750(4)Å
α=81.373(2)° β=79.858(2)° γ=67.962(2)°
C34H20N2O2S2
C34H20N2O2S2
Crystal Growth & Design (2015) 15, 7 3096
a=6.8722(6)Å b=11.2171(11)Å c=33.051(3)Å
α=90° β=90° γ=90°
C28H18N4O2S2
C28H18N4O2S2
Crystal Growth & Design (2015) 15, 7 3096
a=6.8359(3)Å b=15.6377(9)Å c=22.4930(12)Å
α=90° β=90° γ=90°
C44H43F18NRhSb3
C44H43F18NRhSb3
Journal of the American Chemical Society (2020)
a=36.655(7)Å b=9.3680(19)Å c=32.952(7)Å
α=90° β=108.36(3)° γ=90°
C30H30NRh
C30H30NRh
Journal of the American Chemical Society (2020)
a=8.4358(3)Å b=11.8215(5)Å c=11.8878(5)Å
α=89.4274(14)° β=84.7711(13)° γ=88.9100(13)°
C74H70Cl6N2O8Rh2
C74H70Cl6N2O8Rh2
Journal of the American Chemical Society (2020)
a=36.987(7)Å b=35.020(7)Å c=22.654(5)Å
α=90° β=92.27(3)° γ=90°
C17H14F3N3O3
C17H14F3N3O3
Journal of the American Chemical Society (2018) 140, 43 14350-14356
a=11.390(2)Å b=31.815(6)Å c=17.352(3)Å
α=90° β=92.79(3)° γ=90°
C19H22FNSi
C19H22FNSi
Journal of the American Chemical Society (2018) 140, 41 13209-13213
a=8.3674(4)Å b=9.8239(5)Å c=10.5168(5)Å
α=84.3339(17)° β=89.5971(18)° γ=71.2191(17)°
C26H29NSi
C26H29NSi
Journal of the American Chemical Society (2018) 140, 41 13209-13213
a=8.6064(12)Å b=11.5010(17)Å c=12.8161(18)Å
α=71.480(5)° β=71.156(5)° γ=69.281(5)°
C19H23NSi
C19H23NSi
Journal of the American Chemical Society (2018) 140, 41 13209-13213
a=8.0992(3)Å b=9.9826(3)Å c=10.9592(4)Å
α=94.4146(12)° β=93.3668(12)° γ=110.8140(11)°
C12H17NO2
C12H17NO2
Journal of the American Chemical Society (2020) 142, 12 5811-5818
a=10.5324(3)Å b=10.3157(3)Å c=18.7208(5)Å
α=90° β=90° γ=90°
C24H15F6NO4
C24H15F6NO4
Journal of the American Chemical Society (2020) 142, 12 5811-5818
a=60.281(12)Å b=4.9170(10)Å c=14.155(3)Å
α=90° β=93.84(3)° γ=90°
C11H17NO2
C11H17NO2
Journal of the American Chemical Society (2020) 142, 12 5811-5818
a=7.0148(12)Å b=11.8848(18)Å c=12.981(2)Å
α=90° β=90.395(5)° γ=90°
C23H17NO
C23H17NO
Journal of the American Chemical Society (2018) 140, 39 12359-12363
a=7.4060(15)Å b=13.453(3)Å c=17.441(3)Å
α=90° β=90.02(3)° γ=90°
C63.17H42.35BCl2.35F24IrN2O2
C63.17H42.35BCl2.35F24IrN2O2
Journal of the American Chemical Society (2018) 140, 39 12359-12363
a=19.4538(8)Å b=15.5386(7)Å c=21.3223(10)Å
α=90° β=93.348(2)° γ=90°
C15H10BrNO
C15H10BrNO
Journal of the American Chemical Society (2018) 140, 39 12359-12363
a=13.412(3)Å b=14.379(3)Å c=15.278(3)Å
α=91.54(3)° β=106.29(3)° γ=106.58(3)°
C13H10ClNO
C13H10ClNO
Journal of the American Chemical Society (2018) 140, 39 12359-12363
a=7.1030(14)Å b=7.1710(14)Å c=22.409(4)Å
α=94.46(3)° β=96.95(3)° γ=98.47(3)°
C11H10ClNO
C11H10ClNO
Journal of the American Chemical Society (2018) 140, 39 12359-12363
a=7.1224(8)Å b=7.4835(8)Å c=37.037(4)Å
α=90° β=94.938(3)° γ=90°
C28H28ClNO2
C28H28ClNO2
Journal of the American Chemical Society (2018) 140, 39 12359-12363
a=37.321(7)Å b=7.4490(15)Å c=16.822(3)Å
α=90° β=101.13(3)° γ=90°
C24H29ClI2IrNO
C24H29ClI2IrNO
Journal of the American Chemical Society (2020)
a=7.5710(15)Å b=14.723(3)Å c=23.143(5)Å
α=90° β=90° γ=90°
C16H15NO
C16H15NO
Journal of the American Chemical Society (2020)
a=12.714(3)Å b=7.5056(16)Å c=13.686(3)Å
α=90° β=90.064(7)° γ=90°
C11H11NO
C11H11NO
Journal of the American Chemical Society (2020)
a=16.063(3)Å b=9.0740(18)Å c=24.195(5)Å
α=90° β=90° γ=90°
C64H48BCl2F24IrN2O2
C64H48BCl2F24IrN2O2
Journal of the American Chemical Society (2016) 138, 42 14020-14029
a=12.6934(6)Å b=16.4050(8)Å c=17.5560(8)Å
α=62.790(2)° β=82.644(2)° γ=89.710(2)°
C25H18F4O
C25H18F4O
Journal of the American Chemical Society (2020) 142, 16 7487-7496
a=9.7180(19)Å b=10.430(2)Å c=10.479(2)Å
α=109.11(3)° β=102.30(3)° γ=96.78(3)°
C23H18F4O
C23H18F4O
Journal of the American Chemical Society (2020) 142, 16 7487-7496
a=13.666(3)Å b=8.1460(16)Å c=16.531(3)Å
α=90° β=98.73(3)° γ=90°