Electrochemical oxidation strips Pb from Au2PbP2 to produce the polar noncentrosymmetric superconductor Au2Pb0.914P2 with Tc=1.52 K via Jahn-Teller-driven structural rearrangement.
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New A_{2.4}Cr_8Te_{14} compounds form unique ladder-like hybrid structures and exhibit high-temperature antiferro- or ferrimagnetic ground states depending on the alkali metal.
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Stripping Symmetry: Electrochemical Oxidation to a Superconducting Polar Metal in Au2Pb0.914P2
Electrochemical oxidation strips Pb from Au2PbP2 to produce the polar noncentrosymmetric superconductor Au2Pb0.914P2 with Tc=1.52 K via Jahn-Teller-driven structural rearrangement.
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Ladder-like Structural Architecture of Layered Magnetic $A_{2.4}$Cr$_8$Te$_{14}$ ($A$ = Rb, Cs) Compounds by Self-flux Synthesis
New A_{2.4}Cr_8Te_{14} compounds form unique ladder-like hybrid structures and exhibit high-temperature antiferro- or ferrimagnetic ground states depending on the alkali metal.