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Session I, T. Hogan - Bulk Materials I |
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A. Anukhin |
MO-PS.01 |
Component Distribution During The Melting Of Solid Solutions (Bi,Sb)2Te3 Grown From The Excessive Tellurium Melt |
O.N. Uryupin |
MO-PS.O9 |
Transverse Nernst-Ettingshausen Coefficients of Tin Doped Bismuth Single Crystals |
G. Sumanasekera |
MO-PS.33 |
Thermoelectric Properties Of Bi Infiltrated Opal-based Host. |
H. Suzuki |
MO-PS.34 |
Thermoelectric Properties of iron-silicon2 with Oxide-Particles doping |
A.T. Burkov |
MO-PS.41 |
High-temperature thermoelectric properties of heavy-fermion and mixed-valence compounds CeM2Si2 (M=Cu, Co, Mn, Ni, and Fe). |
A. Dauscher |
MO-PS.42 |
Structural and thermoelectric properties of pulsed laser deposited PbTe thin films |
E. Müller for M. Zhitinskaya |
MO-PS.47 |
Extraordinarily High Homogeneity of Electrical Properties of Bi2-xSnxTe3 Single Crystals |
H.T. Kaibe |
MO-PS.48 |
Electrical and Thermal Properties for P-Type b-FeSi2 with Mn and Al Combination Doping |
M. Bartkowiak |
MO-PS.51 |
Electronic structure of Sb2Te3 under pressure |
J.C. Tedenac |
MO-PS.52 |
Mechanical Alloying Lead Telluride Based Materials: Synthesis And Microstructural |
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Session 2, G. Nolas - Bulk Materials II |
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R. Funahashi |
MO-PS.02 |
Thermoelectric properties of layered Co-based oxides |
M. Ito |
MO-PS.03 |
Preparation of Iron Disilicide by Sintering with Cu Addition and Their Thermoelectric Properties |
A. Heinrich |
MO-PS.16 |
Rhenium Disilicide as Thermoelectric Material |
M.G. Kanatzidis |
MO-PS.17 |
New Zintl Phases as Possible Thermoelectric Materials : Ba4In8Sb16, Ba6Sn8Sb18.2, and Ba6Ge25 |
Y. Nagamoto |
MO-PS.24 |
Thermoelectric Properties of barium-Inclusion silicon clathrates |
A. Yamamoto |
MO-PS.28 |
Solid-State Synthesis of Single-Phase Zinc4-Antimony3 Bulk Sample on the Route of the Bulk Mechanical Alloying |
A. Kaliazin |
MO-PS.43 |
Thermoelectric Properties of Magnesium Stannide with Lead |
V. Kuznetsov |
MO-PS.46 |
Preparation and Thermoelectric Properties of A8IIB16IIIB30IV Clathrate Compounds. |
H. Anno |
MO-PS.58 |
Transport Properties of CoSb3 Doped with Magnetic Impurities Fe and Ni |
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Session 3, Bartkowiak - Low-D Materials I |
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A. Khitun |
MO-PS.O4 |
Thermoelectric Figure of Merit Enhancement in Si and SiGe Quantum Wires due to Spatial Confinement of Acoustic Phonons |
J.B. Ketterson |
MO-PS.45 |
Bi Substitution Effects on Sb2Te3 Thin Films on CdTe(111) and GaAs(111)* |
A. Gulian |
MO-PS.15 |
Anisotropic Thermoelectricity in Layered Oxide Materials and Imaging Detectors* |
M.G. Kanatzidis |
MO-PS.18 |
Synthesis, Structure, and Thermoelectric Properties of New Ternary Pb/Bi/Se Compounds |
A. Khitun |
MO-PS.39 |
Optimization of the Thermoelectric Properties via Phonon Enginering |
A. Zakhidov |
MO-PS.49 |
Thermoelectric Properties of p-n Junction Arrays: Thermotransistor Effect* |
T.E. Huber |
MO-PS.53 |
Making Low Resistance Bismuth Wire Array Composites By High Pressure Injection Of Anodic Alumina |
V. Zakordonet |
MO-PS.59 |
Influence of Electron and Phonon Drag on Thermoelectric Figure of Merit of Semiconductors with Limited Dimensions. |
Y. Boikov |
MO-PS.37 |
Epitaxial Bismuth Telluride Based Thin and Thick Films |
X. Sun |
MO-PS.61 |
Theoretical Modeling Of Thermoelectricity in Bi Nanowires |
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Session 4, A. Shakouri - Low-D Materials and Phonons |
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E. Rogacheva |
MO-PS.O6 |
Thermoelectric Characteristics of PbS/EuS Superlattices |
G. Chen |
MO-PS.13 |
Thermal Conductivity and Heat Conduction in Si/Ge Superlattices* |
J.B. Ketterson |
MO-PS.19 |
Anisotropic Seebeck and Magneto-Seebeck Coefficients of Bi and BiSb Alloy Thin Films* |
T. Ohta |
MO-PS.25 |
Thermoelectric Properties Of Silicon Thin Film With Modulated Doping |
H. Okumura |
MO-PS.26 |
Theoretical Transport Models of Semiconductors |
S.B. Schujman |
PO-PS.30 |
Getting Rid of Acoustic Phonons in Heat Transport* |
M.V. Vedernikov |
MO-PS.36 |
Phonon Drag and Inelastic Electron Scattering by Acoustic Phonons in Semiconductor Superlattice |
J.B. Ketterson |
MO-PS.44 |
Thermoelectric Properties of Artificially Layered (BiSb)2Te3* |
K. E. Goodson |
MO-PS.05 |
Thermal Characterization of Bi2Te3/Sb2Te3 Superlattices |
A.G. Shkorbatov |
MO-PS.60 |
The Theory of Point-Contact Phonometer for the Heat Transport in Atomic Scale Contacts |
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Session 5, J. Stockholm - Devices and Applications |
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E. Rogacheva |
MO-PS.O7 |
The Improvement of Thermoelectric Properties of Heterophase Alloys Based on Tin Telluride |
D.P. Snowden |
MO-PS.O8 |
High Temperature Segmenting for Increased Specific Output* |
G. Noriega |
MO-PS.22 |
Development of A New Experimental Method and Simulation to Know the Thermal And Electric Characteristics of a Peltier Cell |
A. Kondo |
MO-PS.31 |
New Proposal of Medium Temperature Thermoelectric Conversion in Power Plant |
A. Zakhidov |
MO-PS.32 |
Design and Fabrication of Periodic Two-component Thermoelectric Nanocomposites and Hybrid Coolers |
Y. Iwaisako |
MO-PS.50 |
High Performance Production of Bismuth2-Tellurium3 Based Thermoelectric Materials on the Route of the Bulk Mechanical Alloying Method |
A. Holopkin |
MO-PS.55 |
Integrated Thermoelectric Cooling Modules and Blocks |
Y. Hasegawa |
MO-PS.54 |
Optical and Electronic Measurements of Carrier and Transport Properties of Bismuth-Antimonide |
P.Y. Takhistov |
MO-PS.57 |
The Simple Relations to Express Consumer Parameters for Two-Stage Thermoelectric Module Connected in Parallel |
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Session 6, B. Mathiprakasam - Device and Characterization |
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R.J. Buist |
MO-PS.12 |
Development of a Burst Voltage Measurement System for High-Resolution Contact Resistance Tests of Thermoelectric Heterojunctions |
A. Gulian |
MO-PS.14 |
Thermoelectric Seebeck-Effect Based Detectors for Hyperspectral Arrays |
P.G. Lau |
MO-PS.20 |
Convection Correction Factor Determination for Use With the Transient Test Method for Thermoelectric Modules |
O.J. Luste |
MO-PS.21 |
Thermoelectric modules: structure, technologies, reliability |
G. Chen |
MO-PS.23 |
Steady-State and Transient Spot Cooling Using Thermoelectric Microcoolers |
Y. Tanji |
MO-PS.35 |
Electric and Thermal Contact Resistances of the New Type Thermoelectric Module Assembled by a Screwing Method |
L.I. Anatychuk |
MO-PS.38 |
Computer simulation of the functionally graded materials for cooling thermoelements with optimal heat sources /sinks distribution |
S.M. Gorodetskiy |
MO-PS.56 |
Determination of Thermoelectric Module Parameters |