Hung Banh
Ruhr University Bochum
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Featured researches published by Hung Banh.
Angewandte Chemie | 2015
Kerstin Freitag; Christian Gemel; Paul Jerabek; Iris M. Oppel; Rüdiger W. Seidel; Gernot Frenking; Hung Banh; Katharina Dilchert; Roland A. Fischer
The triangular clusters [Zn3Cp*3](+) and [Zn2CuCp*3] were obtained by addition of the in situ generated, electrophilic, and isolobal species [ZnCp*](+) and [CuCp*] to Carmonas compound, [Cp*Zn-ZnCp*], without splitting the ZnZn bond. The choice of non-coordinating fluoroaromatic solvents was crucial. The bonding situations of the all-hydrocarbon-ligand-protected clusters were investigated by quantum chemical calculations revealing a high degree of σ-aromaticity similar to the triatomic hydrogen ion [H3](+). The new species serve as molecular building units of Cu(n)Zn(m) nanobrass clusters as indicated by LIFDI mass spectrometry.
Inorganic Chemistry | 2015
Kerstin Freitag; Hung Banh; Christian Gemel; Paul Jerabek; Rüdiger W. Seidel; Gernot Frenking; Roland A. Fischer
The synthesis and characterization of the cationic mixed metal Ga/Zn cluster [Zn2(GaCp*)6](2+) (1) is presented. The reaction of [Zn2Cp*2] with [Ga2Cp*][BAr4(F)] leads to the formation of the novel complex being the first example of a [Zn2](2+) core exclusively ligated by metalloid group-13 organyl-ligands. Compound 1 exhibits two different coordination modes: In the solid state, two of the six GaCp* ligands occupy bridging positions, whereas VT (1)H NMR indicates the coexistence of a second isomer in solution featuring six terminal GaCp* ligands. Quantum chemical calculations have been carried out to assign the gallium and zinc positions; the bonding situation in 1 is characterized and the importance of dispersion forces is discussed.
Angewandte Chemie | 2016
Hung Banh; Katharina Dilchert; Christine Schulz; Christian Gemel; Rüdiger W. Seidel; Régis Gautier; Samia Kahlal; Jean-Yves Saillard; Roland A. Fischer
The bottom-up synthesis of organometallic zinc clusters is described. The cation {[Zn10](Cp*)6 Me}(+) (1) is obtained by reacting [Zn2 Cp*2] with [FeCp2][BAr4 (F)] in the presence of ZnMe2. In the presence of suitable ligands, the high reactivity of 1 enables the controlled abstraction of single Zn units, providing access to the lower-nuclearity clusters {[Zn9 ](Cp*)6} (2) and {[Zn8 ](Cp*)5 ((t) BuNC)3}(+) (3). According to DFT calculations, 1 and 2 can be described as closed-shell species that are electron-deficient in terms of the Wade-Mingos rules because the apical ZnCp* units that constitute the cluster cage do not have three, but only one, frontier orbitals available for cluster bonding. Zinc behaves flexibly in building the skeletal metal-metal bonds, sometimes providing one major frontier orbital (like Group 11 metals) and sometimes providing three frontier orbitals (like Group 13 elements).
Chemical Communications | 2014
Kerstin Freitag; Hung Banh; Christian Gemel; Rüdiger W. Seidel; Samia Kahlal; Jean-Yves Saillard; Roland A. Fischer
Dalton Transactions | 2013
Kerstin Freitag; Hung Banh; Chelladurai Ganesamoorthy; Christian Gemel; Rüdiger W. Seidel; Roland A. Fischer
Angewandte Chemie | 2015
Kerstin Freitag; Christian Gemel; Paul Jerabek; Iris M. Oppel; Rüdiger W. Seidel; Gernot Frenking; Hung Banh; Katharina Dilchert; Roland A. Fischer
Chemical Communications | 2015
Hung Banh; Christian Gemel; Rüdiger W. Seidel; Roland A. Fischer
Dalton Transactions | 2017
Andreas Schneemann; Robin Rudolf; Sebastian Henke; Yukiko Takahashi; Hung Banh; Inke Hante; Christian Schneider; Shin-ichiro Noro; Roland A. Fischer
European Journal of Inorganic Chemistry | 2016
Catherine Roch-Marchal; Tania Hidalgo; Hung Banh; Roland A. Fischer; Patricia Horcajada
Angewandte Chemie | 2016
Hung Banh; Katharina Dilchert; Christine Schulz; Christian Gemel; Rüdiger W. Seidel; Régis Gautier; Samia Kahlal; Jean-Yves Saillard; Roland A. Fischer