Planar tetracoordinate oxygen stabilized within triel-chalcogen dicationic frameworks. [PDF]
Motta L +8 more
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Ring Strain Energies in Four-Membered Heterocycles Containing an Element of Groups 13-16. [PDF]
Rey Planells A +2 more
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First-Principles Design Rules for Selective Room-Temperature Gas Sensing in Transition-Metal-Doped MoS<sub>2</sub>. [PDF]
Szary MJ.
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First-principles design of GaN-VHC (H = Cl, Br; C = Se, Te) van der Waals heterostructures for advanced optoelectronic applications. [PDF]
Ahmad S +4 more
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Study of the electronic, magnetic, and thermoelectric aspects of spinel chalcogenides SrCe<sub>2</sub>Z<sub>4</sub> (Z = Te, Se, S) for spintronic and energy applications. [PDF]
Furqan M +7 more
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From Oxygen to Tellurium: The Impact of the Chalcogen on Nucleophilicities and Basicities of Isochalcogenourea Catalysts. [PDF]
Stockhammer L +8 more
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Multiorbital Two-Band Landau-Fermi Liquidness of 1<i>T</i>-Ti(Se,Te)<sub>2</sub> van der Waals Crystals. [PDF]
Craco L, Hou B, Leoni S.
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Terahertz Properties of GeAsSeSbSnTe Chalcogenide Glassy Semiconductors. [PDF]
Andrianov AV +4 more
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Dual Chalcogen–Chalcogen Bonding Catalysis
Journal of the American Chemical Society, 2020The noncovalent S···O bonding interaction is an evolutionary force that has been smartly exploited by nature to modulate the conformational preferences of proteins. The employment of this type of weak noncovalent force to drive chemical reactions is promising yet remains largely elusive.
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Resonance‐Assisted Intramolecular Chalcogen–Chalcogen Interactions?
Chemistry – A European Journal, 2003AbstractHigh‐level B3LYP/6‐311+G(3df,2p) density functional calculations have been carried out for a series of saturated chalcogenoaldehydes: CH(X)‐CH2‐CH2YH (X, Y=O, S, Se, Te). Our results indicate that in CH(X)‐CH2‐CH2YH (X=Y=O, S, Se) the XH⋅⋅⋅X intramolecular hydrogen bond (IHB) competes in strength with the X⋅⋅⋅XH chalcogen–chalcogen interaction,
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