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ISSN: 2168-9806

Journal of Powder Metallurgy & Mining
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Dr. Reshef Tenne
Dr. Reshef Tenne Reshef Tenne Professor Materials Scientist, Physical and Inorganic Chemist Hebrew University of Jerusalem, Israel

The synthesis, characterization and applications of novel inorganic nanomaterials nicknamed Inorganic Fullerene-like structures-IF and inorganic nanotubes (INT). These nanostructures were discovered in his laboratory in 1992 and form a new and ever expanding class of materials. Recent successes of his lab include the synthesis of the core-shell nanotubes, such as PbI2@WS2 and Pb-intercalated NbS2 nanotubes, the latter are expected to become quasi-1D superconductors at low temperatures. More recently, nanotubes of the misfit compounds, like PbS-TaS2, GdS-CrS2, TbS-VS2 and various others, which are likely to reveal interesting optical, electrical and magnetic properties combined in a single nanotube (under study) were reported. Re- and more recently Nb-doping of IF/INT of WS2 and MoS2 was shown to induce negative (positive) charge on the nanoparticles’ surfaces and leads to precipitous reduction in friction and wear of IF-formulated lubricants. The recent scaling-up of the synthesis of pure WS2 nanotubes to multikilogram quantities is noticeable as well. Furthermore, polymer nanocomposites containing up to 2% IF and INT of WS2 (MoS2) were recently shown (by him and by others) to exhibit high strength; fracture toughness and thermal stability. This recent development is likely to affect many ubiquitous products from aerospace technologies to tissue engineering.

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