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Field-Effect Transistors Based on WS2 Nanotubes with High Current-Carrying CapacityLEVI, Roi; BITTON, Ora; LEITUS, Gregory et al.Nano letters (Print). 2013, Vol 13, Num 8, pp 3736-3741, issn 1530-6984, 6 p.Article

Hollow nanoparticles of WS2 as potential solid-state lubricantsRAPOPORT, L; BILIK, YU; FELDMAN, Y et al.Nature (London). 1997, Vol 387, Num 6635, pp 791-793, issn 0028-0836Article

Catalytic properties of WS2 catalysts prepared by in situ decomposition of tetraalkyl-ammonium thiotungstatesALONSO, G; PETRANOVSKII, V; DEL VALLE, M et al.Studies in surface science and catalysis. 1999, pp 351-355, issn 0167-2991, isbn 0-444-50214-9Conference Paper

Diameter dependent Raman scattering of WS2 nanotubesKRAUSE, Matthias; VIRSEK, Marko; REMSKAR, Maja et al.Physica status solidi. B. Basic research. 2009, Vol 246, Num 11-12, pp 2786-2789, issn 0370-1972, 4 p.Conference Paper

Preparation of alternating MoS2 and WS2 single layers to form a new MoWS4 structureMIREMADI, B. K; MORRISON, S. R.Journal of applied physics. 1990, Vol 67, Num 3, pp 151-1520, issn 0021-8979Article

Adsorption isotherms of nitrogen at 77 and 87 K and n-butane at 236, 253, and 273 K onto tungsten disulfideBANARES-MUNOZ, M. A; SANCHEZ ESCRIBANO, V.Langmuir. 1991, Vol 7, Num 8, pp 1779-1783, issn 0743-7463Article

Better sulphide catalysts through optimized active phase-support interactionMOULIJN, J. A; VAN DOORN, J; VAN DER KRAAN, A. M et al.International journal of energy research. 1994, Vol 18, Num 2, pp 127-143, issn 0363-907XConference Paper

Edge dispersion of supported MoS2 and WS2 catalysts as evaluated by using Co(CO)3NO as a probe moleculeKUBOTA, Takeshi; SATO, Kenji; KATO, Akira et al.Applied catalysis. A, General. 2005, Vol 290, Num 1-2, pp 17-24, issn 0926-860X, 8 p.Article

Mechanism of friction of fullerenesRAPOPORT, L; LESHCHINSKY, V; LVOVSKY, M et al.Industrial Lubrication and Tribology. 2002, Vol 54, Num 4, pp 171-176, issn 0036-8792Article

Hydrothermal synthesis and characterization of quasi-1-D tungsten disulfide nanocrystalYAZHUO SHANG; JUNBAO XIA; ZHUDE XU et al.Journal of dispersion science and technology. 2005, Vol 26, Num 5, pp 635-639, issn 0193-2691, 5 p.Article

Performance of a powder lubricated journal bearing with WS2 powder : Experimental studyHESHMAT, H; BREWE, D. E.Journal of tribology. 1996, Vol 118, Num 3, pp 484-491, issn 0742-4787Article

Real-Time TEM Imaging of Compression and Shear of Single Fullerene-Like MoS2 and WS2 NanoparticiesLAHOUIJ, Imène; DASSENOY, Fabrice; VACHER, Beatrice et al.Tribology & lubrication technology. 2012, Vol 68, Num 12, pp 21-23, issn 1545-858X, 3 p.Article

A counter electrode of multi-wall carbon nanotubes decorated with tungsten sulfide used in dye-sensitized solar cellsGENTIAN YUE; JIHUAI WU; LIN, Jeng-Yu et al.Carbon (New York, NY). 2013, Vol 55, pp 1-9, issn 0008-6223, 9 p.Article

Economical and effective sulfide catalysts for dye-sensitized solar cells as counter electrodesMINGXING WU; YUDI WANG; XIAO LIN et al.PCCP. Physical chemistry chemical physics (Print). 2011, Vol 13, Num 43, pp 19298-19301, issn 1463-9076, 4 p.Article

Slow release of fullerene-like WS2 nanoparticles as a superior solid lubrication mechanism in composite matricesRAPOPORT, Lev; LVOVSKY, Mark; LAPSKER, Igor et al.Advanced engineering materials (Print). 2001, Vol 3, Num 1-2, pp 71-75, issn 1438-1656Article

Bacterial leaching of metal sulfides proceeds by two indirect mechanisms via thiosulfate or via polysulfides and sulfurSCHIPPERS, A; SAND, W.Applied and environmental microbiology (Print). 1999, Vol 65, Num 1, pp 319-321, issn 0099-2240Article

Photoelectrochemical solar cell fabrication with tungsten disulphide single crystalsAGARWAL, A; VASHI, M. N; PATEL, Y et al.SPIE proceedings series. 1998, pp 424-427, isbn 0-8194-2756-X, 2VolConference Paper

Catalytic hydrorefining of heavy resin from medium-temperature coal cokingROKHINA, E. F; SHEVCHENKO, G. G; BELIK, N. A et al.Solid fuel chemistry. 1991, Vol 25, Num 4, pp 119-121, issn 0361-5219Article

Activation of tetraalkylammonium thiotungstates for the preparation of Ni-promoted WS2 catalystsALONSO, G; ESPINO, J; BERHAULT, G et al.Applied catalysis. A, General. 2004, Vol 266, Num 1, pp 29-40, issn 0926-860X, 12 p.Article

Hydrogenation and hydrocraking activities of tungstenum sulfide catalysts supported on alumina. (Part 2) Differences in catalytic functions between Ni-W and Ni-Mo catalystsKAMEOKA, T; SATO, T; YOSHIMURA, Y et al.Sekiyu Gakkai Shi. 1996, Vol 39, Num 2, pp 87-95, issn 0582-4664Article

Extraordinary Room-Temperature Photoluminescence in Triangular WS2 MonolayersGUTIERREZ, Humberto R; PEREA-LOPEZ, Nestor; ELIAS, Ana Laura et al.Nano letters (Print). 2013, Vol 13, Num 8, pp 3447-3454, issn 1530-6984, 8 p.Article

Quantitative Determination of the Band Gap of WS2 with Ambipolar Ionic Liquid-Gated TransistorsBRAGA, Daniele; GUTIERREZ LEZAMA, Ignacio; BERGER, Helmuth et al.Nano letters (Print). 2012, Vol 12, Num 10, pp 5218-5223, issn 1530-6984, 6 p.Article

X-ray photoelectron spectroscopy and tribology studies of annealed fullerene-like WS2 nanoparticles : Solar energetics: from photovoltaics to water splittingSPÄTH, B; KOPNOV, F; COHEN, H et al.Physica status solidi. B. Basic research. 2008, Vol 245, Num 9, pp 1779-1784, issn 0370-1972, 6 p.Article

Bio-inspire co-catalysts bonded to a silicon photocathode for solar hydrogen evolutionYIDONG HOU; ABRAMS, Billie L; DAHL, Søren et al.Proceedings of SPIE, the International Society for Optical Engineering. 2011, Vol 8109, issn 0277-786X, isbn 978-0-8194-8719-3, 81090Q.1-81090Q.8Conference Paper

Inorganic WS2 nanotubes revealed atom by atom using ultra-high-resolution transmission electron microscopySADAN, Maya Bar; HEIDELMANN, Markus; HOUBEN, Lothar et al.Applied physics. A, Materials science & processing (Print). 2009, Vol 96, Num 2, pp 343-348, issn 0947-8396, 6 p.Article

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