Structures by: Leinenweber K.

Total: 17

SiP2O7 HP phase

O7P2Si

Leinenweber, K.Stearns, L.A.Nite, J.M.Nemeth, P.Groy, T.L.

Journal of Solid State Chemistry (2012) 225, 190-221

a=4.3042(7)Å   b=7.1505(12)Å   c=6.2987(11)Å

α=90°   β=103.805(2)°   γ=90°

MoN

MoN

Bull, C.L.McMillan, P.F.Soignard, E.Leinenweber, K.

Journal of Solid State Chemistry (2004) 177, 1488-1492

a=5.73659Å   b=5.73659Å   c=5.61884Å

α=90°   β=90°   γ=120°

Mg (C N)2

C2MgN2

Williams, D.Kouvetakis, J.Pleune, B.Leinenweber, K.

Journal of Solid State Chemistry (2001) 159, 244-250

a=6.122Å   b=6.122Å   c=6.122Å

α=90°   β=90°   γ=90°

Be (C N)2

C2BeN2

Williams, D.Pleune, B.Kouvetakis, J.Leinenweber, K.

Journal of Solid State Chemistry (2001) 159, 244-250

a=5.339Å   b=5.339Å   c=5.339Å

α=90°   β=90°   γ=90°

Al (C N)3

C3AlN3

Williams, D.Kouvetakis, J.Pleune, B.Leinenweber, K.

Journal of Solid State Chemistry (2001) 159, 244-250

a=5.205Å   b=5.205Å   c=5.205Å

α=90°   β=90°   γ=90°

Germanium titanium tetraoxide

Ge1.14O4Ti0.86

Stoyanov, EmilLeinenweber, KurtGroy, Thomas L.Malik, Abds-Sami

Acta Crystallographica Section E (2018) 74, 7 1010-1012

a=4.493(2)Å   b=4.493(2)Å   c=2.9121(13)Å

α=90°   β=90°   γ=90°

CaGe2O5

CaGe2O5

Nemeth, P.Leinenweber, K.Groy, T. L.Buseck, P. R.

American Mineralogist (2007) 92, 441-443

a=7.306Å   b=8.268Å   c=5.714Å

α=90°   β=90°   γ=90°

Perovskite

Ca2O6SiTi

Leinenweber, K.Grzechnik, A.Voorhees, M.Navrotsky, A.Yao, A.McMillan, P. F.

Physics and Chemistry of Minerals (1997) 24, 528-534

a=7.410Å   b=7.410Å   c=7.410Å

α=90°   β=90°   γ=90°

Ca2FHO4Si

Ca2FHO4Si

Leinenweber, K.Johnson, J.Groy, T.

American Mineralogist (2005) 90, 115-121

a=5.8111Å   b=10.6050Å   c=6.6968Å

α=90°   β=102.025°   γ=90°

Ca2TiSiO6

Ca2O6SiTi

Leinenweber, K.Parise, J. B.

American Mineralogist (1997) 82, 475-478

a=7.4105Å   b=7.4105Å   c=7.4105Å

α=90°   β=90°   γ=90°

FeO3Ti

FeO3Ti

Leinenweber, K.Linton, J.Navrotsky, A.Fei, Y.Parise, J. B.

Physics and Chemistry of Minerals (1995) 22, 251-258

a=5.12334Å   b=5.12334Å   c=13.76020Å

α=90°   β=90°   γ=120°

CaFe3O12Ti4

CaFe3O12Ti4

Leinenweber, K.Linton, J.Navrotsky, A.Fei, Y.Parise, J. B.

Physics and Chemistry of Minerals (1995) 22, 251-258

a=7.46718Å   b=7.46718Å   c=7.46718Å

α=90°   β=90°   γ=90°

Brucite (deuterated)

D1.998MgO2

Parise, J. B.Leinenweber, K.Weidner, D. J.Tan, K.Von Dreele, R. B.

American Mineralogist (1994) 79, 193-196

a=3.1167Å   b=3.1167Å   c=4.630Å

α=90°   β=90°   γ=120°

Brucite (deuterated)

D1.998MgO2

Parise, J. B.Leinenweber, K.Weidner, D. J.Tan, K.Von Dreele, R. B.

American Mineralogist (1994) 79, 193-196

a=3.0728Å   b=3.0728Å   c=4.496Å

α=90°   β=90°   γ=120°

Topaz

Al2F2O4Si

Northrup, P. A.Leinenweber, K.Parise, J. B.

American Mineralogist (1994) 79, 401-404

a=4.652Å   b=8.801Å   c=8.404Å

α=90°   β=90°   γ=90°

Topaz

Al2H2O6Si

Northrup, P. A.Leinenweber, K.Parise, J. B.

American Mineralogist (1994) 79, 401-404

a=4.7203Å   b=8.9207Å   c=8.4189Å

α=90°   β=90°   γ=90°

CaD2O2

CaD2O2

Leinenweber, K.Partin, D. E.Schuelke, U.Okeeffe, M.von Dreele, R. B.

Journal of Solid State Chemistry (1997) 132, 267-273

a=5.3979Å   b=6.0931Å   c=5.9852Å

α=90.000°   β=103.581°   γ=90.000°