Thirty electrons "trapped" in a spherical matrix: A molybdenum oxide-based nanostructured Keplerate reduced by 36 electrons

Müller A, Shah SQN, Bögge H, Schmidtmann M, Kögerler P, Hauptfleisch B, Leiding S, Wittler K (2000)
ANGEWANDTE CHEMIE-INTERNATIONAL EDITION 39(9): 1614-1616.

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Müller A, Shah SQN, Bögge H, et al. Thirty electrons "trapped" in a spherical matrix: A molybdenum oxide-based nanostructured Keplerate reduced by 36 electrons. ANGEWANDTE CHEMIE-INTERNATIONAL EDITION. 2000;39(9):1614-1616.
Müller, A., Shah, S. Q. N., Bögge, H., Schmidtmann, M., Kögerler, P., Hauptfleisch, B., Leiding, S., et al. (2000). Thirty electrons "trapped" in a spherical matrix: A molybdenum oxide-based nanostructured Keplerate reduced by 36 electrons. ANGEWANDTE CHEMIE-INTERNATIONAL EDITION, 39(9), 1614-1616.
Müller, A., Shah, S. Q. N., Bögge, H., Schmidtmann, M., Kögerler, P., Hauptfleisch, B., Leiding, S., and Wittler, K. (2000). Thirty electrons "trapped" in a spherical matrix: A molybdenum oxide-based nanostructured Keplerate reduced by 36 electrons. ANGEWANDTE CHEMIE-INTERNATIONAL EDITION 39, 1614-1616.
Müller, A., et al., 2000. Thirty electrons "trapped" in a spherical matrix: A molybdenum oxide-based nanostructured Keplerate reduced by 36 electrons. ANGEWANDTE CHEMIE-INTERNATIONAL EDITION, 39(9), p 1614-1616.
A. Müller, et al., “Thirty electrons "trapped" in a spherical matrix: A molybdenum oxide-based nanostructured Keplerate reduced by 36 electrons”, ANGEWANDTE CHEMIE-INTERNATIONAL EDITION, vol. 39, 2000, pp. 1614-1616.
Müller, A., Shah, S.Q.N., Bögge, H., Schmidtmann, M., Kögerler, P., Hauptfleisch, B., Leiding, S., Wittler, K.: Thirty electrons "trapped" in a spherical matrix: A molybdenum oxide-based nanostructured Keplerate reduced by 36 electrons. ANGEWANDTE CHEMIE-INTERNATIONAL EDITION. 39, 1614-1616 (2000).
Müller, Achim, Shah, S. Qaiser Nazir, Bögge, Hartmut, Schmidtmann, Marc, Kögerler, Paul, Hauptfleisch, B, Leiding, S, and Wittler, K. “Thirty electrons "trapped" in a spherical matrix: A molybdenum oxide-based nanostructured Keplerate reduced by 36 electrons”. ANGEWANDTE CHEMIE-INTERNATIONAL EDITION 39.9 (2000): 1614-1616.
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