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List of works by Zachary M. Gibbs

A new crystal: layer-structured rhombohedral In3Se4

Band Engineering in Thermoelectric Materials Using Optical, Electronic, and Ab-Initio Computed Properties

Ph.D. Dissertation

Band convergence in the non-cubic chalcopyrite compounds Cu2MGeSe4

Band gap estimation from temperature dependent Seebeck measurement—Deviations from the 2e|S|maxTmax relation

Characterization of Lorenz number with Seebeck coefficient measurement

ChemInform Abstract: Thermoelectric Enhancement in BaGa2Sb2by Zn Doping

Chemical composition tuning in quaternary p-type Pb-chalcogenides--a promising strategy for enhanced thermoelectric performance

scientific article published in February 2014

Computational and experimental investigation of TmAgTe2 and XYZ2 compounds, a new group of thermoelectric materials identified by first-principles high-throughput screening

article published in 2015

Convergence of multi-valley bands as the electronic origin of high thermoelectric performance in CoSb3 skutterudites

scientific article published on 5 October 2015

Correction: Computational and experimental investigation of TmAgTe2 and XYZ2 compounds, a new group of thermoelectric materials identified by first-principles high-throughput screening

scholarly article published in Journal of Materials Chemistry C

Effective mass and Fermi surface complexity factor from ab initio band structure calculations

Engineering half-Heusler thermoelectric materials using Zintl chemistry

Enhanced thermoelectric properties of Sr5In2Sb6via Zn-doping

Erratum: “Band gap estimation from temperature dependent Seebeck measurement—Deviations from the 2e|S|maxTmax relation” [Appl. Phys. Lett. 106, 022112 (2015)]

scholarly article published in Applied Physics Letters

Erratum: “Temperature dependent band gap in PbX (X = S, Se, Te)” [Appl. Phys. Lett. 103, 262109 (2013)]

article

Heterogeneous Distribution of Sodium for High Thermoelectric Performance of p-type Multiphase Lead-Chalcogenides

High temperature thermoelectric properties of Zn-doped Eu5In2Sb6

Influence of a Nano Phase Segregation on the Thermoelectric Properties of the p-Type Doped Stannite Compound Cu2+xZn1–xGeSe4

scientific article published on 12 April 2012

Influence of the Triel Elements (M = Al, Ga, In) on the Transport Properties of Ca5M2Sb6 Zintl Compounds

Optical band gap and the Burstein–Moss effect in iodine doped PbTe using diffuse reflectance infrared Fourier transform spectroscopy

Optimization of thermoelectric efficiency in SnTe: the case for the light band

scientific article published on 27 August 2014

Optimum Carrier Concentration in n-Type PbTe Thermoelectrics

article published in 2014

Origin of resistivity anomaly in p-type leads chalcogenide multiphase compounds

Resolving the true band gap of ZrNiSn half-Heusler thermoelectric materials

article by Jennifer Schmitt et al published 2015 in Materials Horizons

Synthesis, Structural Characterization, and Physical Properties of the Type-I Clathrates A8Zn18As28 (A = K, Rb, Cs) and Cs8Cd18As28

Temperature dependent band gap in PbX (X = S, Se, Te)

article

Thermochemistry, Morphology, and Optical Characterization of Germanium Allotropes

scholarly article by Julia V. Zaikina et al published 5 May 2014 in Chemistry of Materials

Thermoelectric Enhancement in BaGa2Sb2 by Zn Doping

Thermoelectric performance of co-doped SnTe with resonant levels

article published in 2016

Thermoelectric performance of tellurium-reduced quaternary p -type lead–chalcogenide composites

scholarly article by Sima Aminorroaya Yamini et al published November 2014 in Acta Materialia

Thermoelectric properties of Sn-doped p-type Cu3SbSe4: a compound with large effective mass and small band gap

Thermopower enhancement in Pb1−xMn x Te alloys and its effect on thermoelectric efficiency

Thinking Like a Chemist: Intuition in Thermoelectric Materials

scientific article published on 25 April 2016

Tuning bands of PbSe for better thermoelectric efficiency

Understanding thermoelectric properties from high-throughput calculations: trends, insights, and comparisons with experiment

YCuTe2: a member of a new class of thermoelectric materials with CuTe4-based layered structure