| Literature DB >> 25891681 |
Arno Knappschneider1, Christian Litterscheid1,2, Jakoah Brgoch3, Nathan C George3, Sebastian Henke4, Anthony K Cheetham4, Jerry G Hu3, Ram Seshadri3, Barbara Albert5.
Abstract
The structural and electronic properties of MnB4 were studied by high-temperature powder X-ray diffraction and measurements of the conductivity and Seebeck coefficient on spark-plasma-sintered samples. A transition from the room-temperature monoclinic structure (space group P2(1)/c) to a high-temperature orthorhombic structure (space group Pnnm) was observed at about 650 K. The material remained semiconducting after the transition, but its behavior changed from p-type to n-type. (55)Mn NMR measurements revealed an isotropic chemical shift of -1315 ppm, confirming an oxidation state of Mn close to I. Solid solutions of Cr(1-x)Mn(x)B4 (two phases in space groups Pnnm and P2(1)/c) were synthesized for the first time. In addition, nanoindentation studies yielded values of (496±26) and (25.3±1.7) GPa for the Young's modulus and hardness, respectively, compared to values of 530 and 37 GPa obtained by DFT calculations.Entities:
Keywords: boron; chromium; manganese; phase transitions; solid solutions
Year: 2015 PMID: 25891681 DOI: 10.1002/chem.201406631
Source DB: PubMed Journal: Chemistry ISSN: 0947-6539 Impact factor: 5.236