Structures by: Araki T.

Total: 81

C22H21NO5

C22H21NO5

Shoji, TakuAraki, TakanoriIida, NanamiMiura, KotaOhta, AkiraSekiguchi, RyutaIto, ShunjiOkujima, Tetsuo

Organic Chemistry Frontiers (2019) 6, 2 195

a=21.2879(7)Å   b=7.5138(4)Å   c=11.5723(6)Å

α=90°   β=90°   γ=90°

Cu0.84 Mn13.9 Mg0.1 Fe As6.3 Si1.7 O33 H6

As6.3Cu0.84FeH6Mg0.1Mn13.9O33Si1.7

Araki, T.Moore, P.B.

American Mineralogist (1981) 66, 1263-1273

a=8.233Å   b=8.233Å   c=37.499Å

α=90°   β=90°   γ=120°

Cu3(SO4)(OH)4

Cu3H4O8S

Araki, T.

Mineralogical Journal (1961) 3, 223-235

a=8.23(2)Å   b=12.00(2)Å   c=6.03(1)Å

α=90°   β=90°   γ=90°

Mg1.8 Mn Mn.09 O2 (B O3)

BMg1.8Mn1.09O5

Araki, T.Moore, P.B.

American Mineralogist (1974) 59, 985-1004

a=21.79Å   b=5.977Å   c=5.341Å

α=90°   β=95.83°   γ=90°

C24H18F3NO2

C24H18F3NO2

Nakamura, ItaruAraki, ToshiharuZhang, DongKudo, YuKwon, EunsangTerada, Masahiro

Organic letters (2011) 13, 14 3616-3619

a=9.800(4)Å   b=9.819(4)Å   c=21.005(8)Å

α=79.398(11)°   β=80.237(11)°   γ=79.763(12)°

Mn10.39 Mg2.53 Al1.89 Fe0.19 (O H)23 (As O3) (As O4)2

Al1.89As3Fe0.19H23Mg2.53Mn10.39O34

Moore, P.B.Araki, T.

American Mineralogist (1978) 63, 150-159

a=8.275Å   b=8.275Å   c=36.6Å

α=90°   β=90°   γ=120°

Pb Cu (S O4) (O H)2

CuH2O6PbS

Araki, T.

Mineralogical Journal (Japan) (1962) 3, 282-295

a=9.68Å   b=5.65Å   c=4.685Å

α=90°   β=102.6°   γ=90°

Pb Cu (S O4) (O H)2

CuH2O6PbS

Araki, T.

Memoirs of the College of Science, University of Kyoto, Series B (1958) 25, 69-79

a=9.67Å   b=5.64Å   c=4.68Å

α=90°   β=102.67°   γ=90°

Fe Ca2 Al2 (B O3) (Si4 O12) O H

Al2BCa2FeHO16Si4

Ito, Tei-ichiTakéuchi, YoshioOzawa, ToruAraki, TakaharuZoltai, TiborFinney, J. J.

Proceedings of the Japan Academy (1969) 45, 6 490-494

a=7.1566Å   b=9.1995Å   c=8.9585Å

α=91.75°   β=98.14°   γ=77.3°

Mg1.33 Al0.21 Fe0.12 Ti0.34 O (B O3)

Al0.21BFe0.12Mg1.33O4Ti0.34

Moore, P.B.Araki, T.

American Mineralogist (1974) 59, 985-1004

a=9.197Å   b=9.358Å   c=3.085Å

α=90°   β=90°   γ=90°

Fe3 (N H4) (P O3 (O H).666 O.333)3 (P O2 (O H)2)3 (H2 O)6

Fe3H23.998NO29.997P6

Moore, P.B.Araki, T.

American Mineralogist (1979) 64, 587-592

a=9.151Å   b=9.151Å   c=16.862Å

α=90°   β=90°   γ=120°

Mn7.935 Mg0.555 Cu0.510 (As6 Mn0.95 O18) Cl0.80 (O H)0.20

As6Cl0.8Cu0.51H0.2Mg0.555Mn8.885O18.2

Moore, P.B.Araki, T.

American Mineralogist (1979) 64, 390-401

a=19.68Å   b=19.68Å   c=19.68Å

α=90°   β=90°   γ=90°

K Na4 Ca (Mn9.9 Fe4.1) Al (O H)2 (P O4)12

AlCaFe4.1H2KMn9.9Na4O50P12

Moore, P.B.Araki, T.Merlino, S.Zanazzi, P.F.Mellini, M.

American Mineralogist (1981) 66, 1034-1049

a=24.94Å   b=10.131Å   c=16.7219Å

α=90°   β=105.6°   γ=90°

K Na5 Ca (Fe10 Mn3) Al F2 (P O4)12

AlCaF2Fe10KMn3Na5O48P12

Moore, P.B.Zanazzi, P.F.Araki, T.Merlino, S.Mellini, M.

American Mineralogist (1981) 66, 1034-1049

a=24.693Å   b=10.031Å   c=16.453Å

α=90°   β=105.72°   γ=90°

Mg3.916 Al5.4 (Al0.5 B0.558 Si3.942 O21 (O H))

Al5.9B0.558HMg3.916O22Si3.942

Moore, P.B.Araki, T.

Neues Jahrbuch fuer Mineralogie. Abhandlungen (Band-Nr) (1950-) (1979) 134, 317-336

a=16.016Å   b=13.758Å   c=6.72Å

α=90°   β=90°   γ=90°

K Na5 Ca (Fe8.5 Mn4.5) Al F (O H) (P O4)12

AlCaFFe8.5HKMn4.5Na5O49P12

Moore, P.B.Araki, T.Zanazzi, P.F.Merlino, S.Mellini, M.

American Mineralogist (1981) 66, 1034-1049

a=24.73Å   b=10.057Å   c=16.526Å

α=90°   β=105.78°   γ=90°

C22H20N2O4

C22H20N2O4

Shoji, TakuSugiyama, ShuheiAraki, TakanoriOhta, AkiraSekiguchi, RyutaIto, ShunjiMori, ShigekiOkujima, Tetsuo

Org. Biomol. Chem. (2017)

a=12.8205(4)Å   b=8.9300(3)Å   c=16.3199(6)Å

α=90°   β=93.109(3)°   γ=90°

C23H22N2O4

C23H22N2O4

Shoji, TakuSugiyama, ShuheiAraki, TakanoriOhta, AkiraSekiguchi, RyutaIto, ShunjiMori, ShigekiOkujima, Tetsuo

Org. Biomol. Chem. (2017)

a=15.5798(6)Å   b=15.4279(8)Å   c=16.6633(7)Å

α=90°   β=90.085(4)°   γ=90°

?

C6H3LaO11P3

Takahiro ArakiAtsushi KondoKazuyuki Maeda

Chem.Commun. (2013) 49, 552

a=9.6708(2)Å   b=16.3872(3)Å   c=9.2210(2)Å

α=90°   β=117.8512(6)°   γ=90°

C24H18F3NO2

C24H18F3NO2

Itaru NakamuraToshiharu ArakiMasahiro Terada

Journal of the American Chemical Society (2011) 133, 6861-6861

a=9.800(4)Å   b=9.819(4)Å   c=21.005(8)Å

α=79.398(11)°   β=80.237(11)°   γ=79.763(12)°

C24H18F3NO2

C24H18F3NO2

Itaru NakamuraToshiharu ArakiMasahiro Terada

Journal of the American Chemical Society (2009) 131, 2804-2805

a=9.800(3)Å   b=9.819(3)Å   c=21.005(8)Å

α=79.398(11)°   β=80.237(11)°   γ=79.763(12)°

1,2-Bis(dimethylamino)[3,2-c:2?,3?-e] dithieno-1,2-dihydro-1,2-Diborin

C12H16B2N2S2

Atsushi WakamiyaKenji MoriTakafumi ArakiShigehiro Yamaguchi

Journal of the American Chemical Society (2009) 131, 10850-10851

a=7.8612(17)Å   b=11.015(2)Å   c=16.196(4)Å

α=90.00°   β=90.00°   γ=90.00°

Bis[potassium[2.2.2]cryptand]salt of 1,2-bis(dimethylamino)[3,2-c:2',3'-e] dithieno-1,2-dihydro-1,2-diborin

C54H96B2K2N6O13.5S2

Atsushi WakamiyaKenji MoriTakafumi ArakiShigehiro Yamaguchi

Journal of the American Chemical Society (2009) 131, 10850-10851

a=13.835(4)Å   b=24.235(7)Å   c=38.188(11)Å

α=90.00°   β=99.229(4)°   γ=90.00°

(Mn4.11 Mg0.89) (Sb O4) (As O4) (Si O4)

AsMg0.89Mn4.11O12SbSi

Moore, P.B.Araki, T.

Inorganic Chemistry (1977) 16, 1839-1847

a=10.048Å   b=19.418Å   c=9.735Å

α=90°   β=95.83°   γ=90°

Cs0.814 (Al Si5 O12)

AlCs0.814O12Si5

Araki, T.

Zeitschrift fuer Kristallographie (149,1979-) (1980) 152, 207-213

a=16.776Å   b=13.828Å   c=5.021Å

α=90°   β=90°   γ=90°

Wightmanite

BH13Mg5O10.4

Moore, P. B.Araki, T.

Nature Physical Science (1972) 236, 25-26

a=13.46Å   b=3.1Å   c=18.17Å

α=90°   β=91.6°   γ=90°

Johachidolite

AlB3CaO7

Moore, P. B.Araki, T.

Nature Physical Science (1972) 240, 63-65

a=7.970Å   b=11.722Å   c=4.374Å

α=90°   β=90°   γ=90°

Phosphoferrite

Fe3H6O11P2

Moore, P. B.Araki, T.

Inorganic Chemistry (1976) 15, 316-321

a=9.460Å   b=10.024Å   c=8.670Å

α=90°   β=90°   γ=90°

Mitridatite

Ca2Fe3H6O17P3

Moore, P. B.Araki, T.

Inorganic Chemistry (1977) 16, 1096-1106

a=17.5530Å   b=19.3540Å   c=11.248Å

α=90°   β=95.84°   γ=90°

Mitridatite

Ca2Fe3H6O17P3

Moore, P. B.Araki, T.

Mineralogical Magazine (1977) 41, 527-528

a=17.53Å   b=19.35Å   c=11.25Å

α=90°   β=95.92°   γ=90°

Merwinite

Ca3MgO8Si2

Moore, P. B.Araki, T.

American Mineralogist (1972) 57, 1355-1374

a=13.254Å   b=5.293Å   c=9.328Å

α=90°   β=91.90°   γ=90°

Glauberite

CaNa2O8S2

Araki, T.Zoltai, T.

American Mineralogist (1967) 52, 1272-1277

a=10.129Å   b=8.306Å   c=8.533Å

α=90°   β=112.19°   γ=90°

Augelite

Al2H3O7P

Araki, T.Finney, J. J.Zoltai, T.

American Mineralogist (1968) 53, 1096-1103

a=13.124Å   b=7.988Å   c=5.066Å

α=90°   β=112.25°   γ=90°

Magnussonite

As4Cl0.534Cu0.34H0.134Mg0.37Mn5.922O12.134

Moore, P. B.Araki, T.

American Mineralogist (1979) 64, 390-401

a=19.680Å   b=19.680Å   c=19.680Å

α=90°   β=90°   γ=90°

Ferric acid phosphate

Fe3H21NO30P6

Moore, P. B.Araki, T.

American Mineralogist (1979) 64, 587-592

a=9.151Å   b=9.151Å   c=16.862Å

α=90°   β=90°   γ=120°

Armangite

CAs18Mn26O57

Moore, P. B.Araki, T.

American Mineralogist (1979) 64, 748-757

a=13.491Å   b=13.491Å   c=8.855Å

α=90°   β=90°   γ=120°

Senegalite

Al2H5O8P

Keegan, T. D.Araki, T.Moore, P. B.

American Mineralogist (1979) 64, 1243-1247

a=7.675Å   b=9.711Å   c=7.635Å

α=90°   β=90°   γ=90°

Paulmooreite

As2O5Pb2

Araki, T.Moore, P. B.Brunton, G. D.

American Mineralogist (1980) 65, 340-345

a=13.584Å   b=5.650Å   c=8.551Å

α=90°   β=108.78°   γ=90°

Bahianite

Al4.76Fe0.34O16Sb2.9

Moore, P. B.Araki, T.

Neues Jahrbuch fur Mineralogie, Abhandlungen (1976) 126, 113-125

a=9.406Å   b=11.541Å   c=4.410Å

α=90°   β=90.94°   γ=90°

Katoptrite

Al4Mn13O28Sb2Si2

Moore, P. B.Araki, T.Brunton, G. D.

Neues Jahrbuch fur Mineralogie, Abhandlungen (1976) 127, 47-61

a=5.617Å   b=23.02Å   c=9.079Å

α=90°   β=101.38°   γ=90°

Angelellite

As2Fe4O11

Moore, P. B.Araki, T.

Neues Jahrbuch fur Mineralogie, Abhandlungen (1978) 132, 91-100

a=6.461Å   b=6.594Å   c=5.036Å

α=106.21°   β=98.35°   γ=108.86°

Hureaulite

H6Mn5O20P4

Moore, P. B.Araki, T.

American Mineralogist (1973) 58, 302-307

a=17.594Å   b=9.086Å   c=9.404Å

α=90°   β=96.67°   γ=90°

Hanksite

C2ClKNa22O42S9

Araki, T.Zoltai, T.

American Mineralogist (1973) 58, 799-801

a=10.465Å   b=10.465Å   c=21.191Å

α=90°   β=90°   γ=120°

Roweite

B4Ca2H6Mn2O13

Moore, P. B.Araki, T.

American Mineralogist (1974) 59, 60-65

a=9.057Å   b=13.357Å   c=8.289Å

α=90°   β=90°   γ=90°

Bjarebyite

Al2Ba0.9Fe0.9H3Mg0.2Mn0.9O15P3Sr0.1

Moore, P. B.Araki, T.

American Mineralogist (1974) 59, 567-572

a=8.930Å   b=12.073Å   c=4.917Å

α=90°   β=100.15°   γ=90°

Montgomeryite

Al2Ca2H14Mg0.5O20P3

Moore, P. B.Araki, T.

American Mineralogist (1974) 59, 843-850

a=10.023Å   b=24.121Å   c=6.243Å

α=90°   β=91.55°   γ=90°

Trolleite

Al4H3O15P3

Moore, P. B.Araki, T.

American Mineralogist (1974) 59, 974-984

a=18.894Å   b=7.161Å   c=7.162Å

α=90°   β=99.99°   γ=90°

Jahnsite-(CaMnMg)

CaFe2H18Mg2MnO26P4

Moore, P. B.Araki, T.

American Mineralogist (1974) 59, 964-973

a=14.94Å   b=7.14Å   c=9.93Å

α=90°   β=110.16°   γ=90°

Pinakiolite

B2Fe0.02Mg3.62Mn2.16O10

Moore, P. B.Araki, T.

American Mineralogist (1974) 59, 985-1004

a=21.79Å   b=5.977Å   c=5.341Å

α=90°   β=95.83°   γ=90°

Stewartite

Fe2H18MnO18P2

Moore, P. B.Araki, T.

American Mineralogist (1974) 59, 1272-1276

a=10.398Å   b=10.672Å   c=7.223Å

α=90.10°   β=109.10°   γ=71.83°

Fe3H2O9P2

Fe3H2O9P2

Moore, P. B.Araki, T.

American Mineralogist (1975) 60, 454-459

a=9.431Å   b=10.066Å   c=8.040Å

α=90°   β=117.6°   γ=90°

Palermoite

Al4H4Li2O20P4Sr

Moore, P. B.Araki, T.

American Mineralogist (1975) 60, 460-465

a=11.556Å   b=15.847Å   c=7.315Å

α=90°   β=90°   γ=90°

Foggite

Al2Ca2H5.8O15P2

Moore, P. B.Kampf, A. R.Araki, T.

American Mineralogist (1975) 60, 965-971

a=9.270Å   b=21.324Å   c=5.190Å

α=90°   β=90°   γ=90°

Olmsteadite

Fe2H4KNb0.59O12P2Ta0.41

Moore, P. B.Araki, T.Kampf, A. R.Steele, I. M.

American Mineralogist (1976) 61, 5-11

a=7.512Å   b=10.000Å   c=6.492Å

α=90°   β=90°   γ=90°

Bredigite

Ba0.293Ca13.467Mg1.81Mn0.43O32Si8

Moore, P. B.Araki, T.

American Mineralogist (1976) 61, 74-87

a=10.909Å   b=18.340Å   c=6.739Å

α=90°   β=90°   γ=90°

Painite

Al9BCaO18Zr

Moore, P. B.Araki, T.

American Mineralogist (1976) 61, 88-94

a=8.715Å   b=8.715Å   c=8.472Å

α=90°   β=90°   γ=120°

Wavellite

Al3H15O16P2

Araki, T.Zoltai, T.

Zeitschrift fur Kristallographie (1968) 127, 21-33

a=9.621Å   b=17.3630Å   c=6.994Å

α=90°   β=90°   γ=90°

Coesite

O2Si

Araki, T.Zoltai, T.

Zeitschrift fur Kristallographie (1969) 129, 381-387

a=7.173Å   b=12.328Å   c=7.175Å

α=90°   β=120.00°   γ=90°

Babingtonite

Ca2Fe1.856O15Si5

Araki, T.Zoltai, T.

Zeitschrift fur Kristallographie (1972) 135, 355-373

a=7.509Å   b=11.697Å   c=6.719Å

α=91.433°   β=93.886°   γ=104.255°

Ca3Mn2O14Si4

Ca3Mn2O14Si4

Moore, P. B.Araki, T.

Zeitschrift fur Kristallographie (1979) 150, 287-297

a=14.263Å   b=7.620Å   c=10.025Å

α=90°   β=93.27°   γ=90°

Braunite

Mn7O12Si

Moore, P. B.Araki, T.

American Mineralogist (1976) 61, 1226-1240

a=9.408Å   b=9.408Å   c=18.668Å

α=90°   β=90°   γ=90°

Gerstmannite

H2Mg1.214Mn0.786O6SiZn

Moore, P. B.Araki, T.

American Mineralogist (1977) 62, 51-59

a=8.185Å   b=18.650Å   c=6.256Å

α=90°   β=90°   γ=90°

Samuelsonite

Al2Ba0.42Ca8.92Fe0.82H2Mn1.8Na1.02O42P10

Moore, P. B.Araki, T.

American Mineralogist (1977) 62, 229-245

a=18.495Å   b=6.805Å   c=14.000Å

α=90°   β=112.75°   γ=90°

Holdenite

As2H8Mg0.55Mn5.45O20SiZn3

Moore, P. B.Araki, T.

American Mineralogist (1977) 62, 513-521

a=11.99Å   b=31.46Å   c=8.697Å

α=90°   β=90°   γ=90°

Overite

AlCaH9MgO13P2

Moore, P. B.Araki, T.

American Mineralogist (1977) 62, 692-702

a=14.723Å   b=18.746Å   c=7.107Å

α=90°   β=90°   γ=90°

Segelerite

CaFeH9MgO13P2

Moore, P. B.Araki, T.

American Mineralogist (1977) 62, 692-702

a=14.826Å   b=18.751Å   c=7.307Å

α=90°   β=90°   γ=90°

Hematolite

Al4.42As3Fe0.42H23Mn10.16O34

Moore, P. B.Araki, T.

American Mineralogist (1978) 63, 150-159

a=8.275Å   b=8.275Å   c=36.600Å

α=90°   β=90°   γ=120°

Gainesite

Be0.5Na0.956O8P2Zr

Moore, P. B.Araki, T.Steele, I. M.Swihart, G. H.Kampf, A. R.

American Mineralogist (1983) 68, 1022-1028

a=6.567Å   b=6.567Å   c=17.119Å

α=90°   β=90°   γ=90°

Orientite

Ca2H4Mn3O14Si2.5

Moore, P. B.Shen, J.Araki, T.

American Mineralogist (1985) 70, 171-181

a=9.074Å   b=19.130Å   c=6.121Å

α=90°   β=90°   γ=90°

Macfallite

Al0.39Ca2H3Mn2.61O14Si3

Moore, P. B.Shen, J.Araki, T.

American Mineralogist (1985) 70, 171-181

a=10.235Å   b=6.086Å   c=8.970Å

α=90°   β=110.8°   γ=90°

Ruizite

Ca2H6Mn2O17Si4

Moore, P. B.Shen, J.Araki, T.

American Mineralogist (1985) 70, 171-181

a=9.064Å   b=6.171Å   c=11.976Å

α=90°   β=91.4°   γ=90°

Fillowite

Ca4.66Fe8.02Mn35.6Na11.72O144P36

Araki, T.Moore, P. B.

American Mineralogist (1981) 66, 827-842

a=15.282Å   b=15.282Å   c=43.507Å

α=90°   β=90°   γ=120°

Arrojadite-(KFe)

AlCaF2Fe14KNa4O48P12

Moore, P. B.Araki, T.Merlino, S.Mellini, M.Zanazzi, P. F.

American Mineralogist (1981) 66, 1034-1049

a=24.692Å   b=10.031Å   c=16.453Å

α=90°   β=105.78°   γ=90°

Arrojadite-(KFe)

AlCaF2Fe14KNa4O48P12

Moore, P. B.Araki, T.Merlino, S.Mellini, M.Zanazzi, P. F.

American Mineralogist (1981) 66, 1034-1049

a=24.730Å   b=10.057Å   c=16.526Å

α=90°   β=105.78°   γ=90°

Dickinsonite-(KMnNa)

AlCaF2Fe14KNa4O48P12

Moore, P. B.Araki, T.Merlino, S.Mellini, M.Zanazzi, P. F.

American Mineralogist (1981) 66, 1034-1049

a=24.940Å   b=10.131Å   c=16.722Å

α=90°   β=105.60°   γ=90°

Dixenite

As6.3Cu0.843FeH6Mg0.1Mn12.9O33Si1.7

Araki, T.Moore, P. B.

American Mineralogist (1981) 66, 1263-1273

a=8.233Å   b=8.233Å   c=37.499Å

α=90°   β=90°   γ=120°

Hyalotekite

B2Ba2.838Be0.38Ca2FO28Pb1.162Si9.62

Moore, P. B.Araki, T.Ghose, S.

American Mineralogist (1982) 67, 1012-1020

a=11.310Å   b=10.955Å   c=10.317Å

α=90.43°   β=90.02°   γ=90.16°

Surinamite

Al8.48Be1.89Fe1.518Mg3.884O32Si6.11

Moore, P. B.Araki, T.

American Mineralogist (1983) 68, 804-810

a=9.916Å   b=11.384Å   c=9.631Å

α=90°   β=109.3°   γ=90°

Landesite

FeH6Mn2O11P2

Moore, P. B.Araki, T.Kampf, A. R.

Mineralogical Magazine (1980) 43, 789-795

a=9.458Å   b=10.185Å   c=8.543Å

α=90°   β=90°   γ=90°

Kryzhanovskite

Fe2H6MnO11P2

Moore, P. B.Araki, T.Kampf, A. R.

Mineralogical Magazine (1980) 43, 789-795

a=9.450Å   b=10.013Å   c=8.179Å

α=90°   β=90°   γ=90°

Lead molybdate

Araki, T.

Memoirs of the College of Science, University of Kyoto, Series B (1957) 24, 155-160

a=5.47(1)Å   b=5.47(1)Å   c=12.18(2)Å

α=90°   β=90°   γ=90°