G. E. Yakovleva

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Transition metal chalcogenides are perspective thermoelectric materials which have a great interest for application. In this work, the polycrystalline bulk WS<sub>2</sub> and solid solutions WS<sub>2-y</sub>Se<sub>y</sub> types have been studied. In contrast to the literature data obtained at higher temperatures, we have investigated the thermoelectric(More)
Transition-metal chalcogenides are prospective thermoelectric materials. One of them is a molybdenum disulfide MoS<sub>2</sub>, which has a layered structure. MoS<sub>2</sub> has a good potential to have a high value of thermoelectric quality factor due to a high value of thermo-EMF and low value of thermal conductivity. But a low value of its electrical(More)
Transition-metal chalcogenides are prospective thermoelectric materials. One of them is a molybdenum disulfide MoS 2 , which has a layered structure. MoS 2 has a good potential to have a high value of thermoelectric quality factor due to a high value of thermo-EMF and low value of thermal conductivity. But a low value of its electrical conductivity(More)
We theoretically analyze the aggregation kinetics of colloid particles with several active sites. Such particles (so-called "patchy particles") are well known as chemically anisotropic reactants, but the corresponding rate constant of their aggregation has not yet been established in a convenient analytical form. Using kinematic approximation for the(More)
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