Results 11 to 20 of about 12,990 (265)
Organic π-radical crystals are potential single-component molecular conductors, as they involve charge carriers. We fabricated new organic π-radical crystals using axially ligated metal phthalocyanine anions ([MIII(Pc)L2]−) as starting materials ...
Ryoya Sato, Masaki Matsuda
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The studies of crystal structures with hydrogen bonds have been actively pursued because of their moderate stabilization energy for constructing unique structures.
Shohei Koyama +7 more
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A New Charge-Ordered Molecular Conductor: κ-(BEDT-TTF)2K+(18-crown-6)[CoII(NCS)4]∙(H2O)
A new molecular conductor, i.e., κ-(BEDT-TTF)2K+(18-crown-6)[CoII(NCS)4]∙(H2O), is semiconductive with substantial charge gap values (ΔE) of 0.57 eV (measured) and 0.37 eV (calculated).
Andrei A. Bardin +2 more
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A review: Recent advancements in sensor technology for non-invasive neonatal health monitoring
Neonates and paediatric patients need to be monitored using a variety of instruments to measure physiological parameters such as heart rate, blood pressure, cardiac activity, respiratory rate, body temperature, etc.
Shivam Mishra +6 more
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Strongly Correlated Aromatic Molecular Conductor [PDF]
AbstractStrongly correlated electronic molecules open the way for strong coupling between charge, spin, and lattice degrees of freedom to enable interdisciplinary fields, such as molecular electronic switches and plasmonics, spintronics, information storage, and superconducting circuits. However, despite exciting computational predictions and promising
Yong Hu +8 more
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New BEDT-TTF Radical Cation Salt with Mixed Anions: α'-[BEDT-TTF]2[CuBr2]0.4[CuCl2]0.6
A new mixed-anion crystal composed of BEDT-TTF radical cation salt [BEDT-TTF]2(CuBr2)0.4(CuCl2)0.6 with an α'-type donor arrangement with a formal charge of +0.5 per BEDT-TTF was prepared by using a chemical oxidation method and characterized by ...
Kazuya Kubo, Masahiro Yamashita
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Bis-fused donors composed of (thio)pyran-4-ylidene-1,3-dithiole and tetraselenafulvalene (1a, 2a) and their bis(methylthio) derivatives (1b, 2b) were synthesized.
Yohji Misaki +4 more
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Charge transfer in molecular conductors—oxidation or reduction? [PDF]
We discuss the nature of charge transfer in molecular conductors upon connecting to two metallic contacts and imposing a voltage bias across them. The sign of the charge transfer (oxidation vs. reduction) depends on the position of the metal Fermi energy with respect to the molecular levels.
Birge, RR, Ghosh, AW, Datta, S, Zahid, F
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Interplay of orbital degeneracy and superconductivity in a molecular conductor [PDF]
11 pages, REVTEX style, 3 compressed figures ...
Fabrizio, Michele, Airoldi M, Tosatti E.
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Magnetism of Molecular Conductors [PDF]
The study of the magnetic properties of molecular conductors has experienced, during the last decades, a very significant evolution, comprising systems of increasing molecular complexity and moving towards multifunctional materials, namely by their incorporation in conducting networks of different paramagnetic centers.[...]
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