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Featured researches published by P. Heinrich.


Journal of Applied Physics | 2016

Thermoelectric properties of In and I doped PbTe

Ashoka Bali; Raju Chetty; Amit Sharma; G. Rogl; P. Heinrich; Satyam Suwas; D. K. Misra; P. Rogl; E. Bauer; Ramesh Chandra Mallik

A systematic study of structural, microstructural, and thermoelectric properties of bulk PbTe doped with indium (In) alone and co-doped with both indium and iodine (I) has been done. X-ray diffraction results showed all the samples to be of single phase. Scanning electron microscopy (SEM) results revealed the particle sizes to be in the range of micrometers, while high resolution transmission electron microscopy was used to investigate distinct microstructural features such as interfaces, grain boundaries, and strain field domains. Hall measurement at 300 K revealed the carrier concentration ∼1019 cm−3 showing the degenerate nature which was further seen in the electrical resistivity of samples, which increased with rising temperature. Seebeck coefficient indicated that all samples were n–type semiconductors with electrons as the majority carriers throughout the temperature range. A maximum power factor ∼25 μW cm−1 K−2 for all In doped samples and Pb0.998In0.003Te1.000I0.003 was observed at 700 K. Doping ...


Physical Chemistry Chemical Physics | 2015

Ba5{V,Nb}12Sb19+x, novel variants of the Ba5Ti12Sb19+x-type: crystal structure and physical properties

Fainan Failamani; A. Grytsiv; Gerald Giester; G. Polt; P. Heinrich; H. Michor; E. Bauer; M. Zehetbauer; P. Rogl

The novel compounds Ba5{V,Nb}12Sb19+x, initially found in diffusion zone experiments between Ba-filled skutterudite Ba0.3Co4Sb12 and group V transition metals (V,Nb,Ta), were synthesized via solid state reaction and were characterized by means of X-ray (single crystal and powder) diffraction, electron probe microanalysis (EPMA), and physical (transport and mechanical) properties measurements. Ba5V12Sb19.41 (a = 1.21230(1) nm, space group P4[combining overline]3m; RF(2) = 0.0189) and Ba5Nb12Sb19.14 (a = 1.24979(2) nm, space group P4[combining overline]3m; RF(2) = 0.0219) are the first representatives of the Ba5Ti12Sb19+x-type, however, in contrast to the aristotype, the structure of Ba5V12Sb19.41 shows additional atom disorder. Temperature dependent ADPs and specific heat of Ba5V12Sb19.41 confirmed the rattling behaviour of Ba1,2 and Sb7 atoms within the framework built by V and Sb atoms. Electrical resistivity of both compounds show an upturn at low temperature, and a change from p- to n-type conductivity above 300 K in Ba4.9Nb12Sb19.4. As expected from the complex crystal structure and the presence of defects and disorder, the thermal conductivity is suppressed and lattice thermal conductivity of ∼0.43 W m(-1) K(-1) is near values typical for amorphous systems. Vickers hardness of (3.8 ± 0.1) GPa (vanadium compound) and (3.5 ± 0.2) GPa (niobium compound) are comparable to Sb-based filled skutterudites. However, the Youngs moduli measured by nanoindentation for these compounds EI(Ba4.9V12Sb19.0) = (85 ± 2) GPa and EI(Ba4.9Nb12Sb19.4) = (79 ± 5) GPa are significantly smaller than those of skutterudites, which range from about 130 to 145 GPa.


Acta Materialia | 2015

New bulk p-type skutterudites DD0.7Fe2.7Co1.3Sb12−xXx (X = Ge, Sn) reaching ZT > 1.3

G. Rogl; A. Grytsiv; P. Heinrich; E. Bauer; Praveen Kumar; N. Peranio; O. Eibl; Jelena Horky; M. Zehetbauer; P. Rogl


Materials Chemistry and Physics | 2014

Thermoelectric properties of Zn doped Cu2SnSe3

Ch. Raju; M. Falmbigl; P. Rogl; P. Heinrich; E. Royanian; E. Bauer; Ramesh Chandra Mallik


Acta Materialia | 2013

New p- and n-type skutterudites with ZT>1 and nearly identical thermal expansion and mechanical properties

G. Rogl; A. Grytsiv; E. Royanian; P. Heinrich; E. Bauer; P. Rogl; M. Zehetbauer; Stephan Puchegger; Marius Reinecker; W. Schranz


Acta Materialia | 2017

(V,Nb)-doped half Heusler alloys based on {Ti,Zr,Hf}NiSn with high ZT

G. Rogl; P. Sauerschnig; Z. Rykavets; Vitalij Romaka; P. Heinrich; B. Hinterleitner; A. Grytsiv; E. Bauer; P. Rogl


Physica Status Solidi (a) | 2013

The effect of multisubstitution on the thermoelectric properties of chalcogenide-based Cu2.1Zn0.9Sn1-xInxSe4 (0 <= x <= 0.1)

Raju Chetty; M. Falmbigl; P. Rogl; P. Heinrich; E. Royanian; E. Bauer; Satyam Suwas; Ramesh Chandra Mallik


Journal of Alloys and Compounds | 2013

Tuning of band gap and thermoelectric properties of type-I clathrate Ba8NixZnyGe46−x−y−zSnz

M. Falmbigl; A. Grytsiv; P. Rogl; P. Heinrich; E. Royanian; E. Bauer


Acta Materialia | 2017

On the Half-Heusler compounds Nb1-x{Ti,Zr,Hf}xFeSb: Phase relations, thermoelectric properties at low and high temperature, and mechanical properties

A. Tavassoli; Fainan Failamani; A. Grytsiv; G. Rogl; P. Heinrich; H. Müller; E. Bauer; M. Zehetbauer; P. Rogl


Dalton Transactions | 2016

Ba-filled Ni–Sb–Sn based skutterudites with anomalously high lattice thermal conductivity

W. Paschinger; G. Rogl; A. Grytsiv; H. Michor; P. Heinrich; H. Müller; Stephan Puchegger; B. Klobes; R. P. Hermann; Marius Reinecker; Ch. Eisenmenger-Sitter; Pavel Broz; E. Bauer; Gerald Giester; M. Zehetbauer; P. Rogl

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E. Bauer

Vienna University of Technology

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P. Rogl

University of Vienna

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G. Rogl

University of Vienna

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E. Royanian

Vienna University of Technology

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H. Michor

Vienna University of Technology

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