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Charge density waves and electron-hole instabilities of the hidden-nesting materials P4W12O44, γ - and η−Mo4O11

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Physical Review B 110 (9) (2024)
https://doi.org/10.1103/PhysRevB.110.094103

Structural approach to charge density waves in low-dimensional systems: electronic instability and chemical bonding

Jean-Paul Pouget and Enric Canadell
Reports on Progress in Physics 87 (2) 026501 (2024)
https://doi.org/10.1088/1361-6633/ad124f

Giant Nernst effect in the incommensurate charge density wave state ofP4W12O44

Kamil K. Kolincio, Ramzy Daou, Olivier Pérez, et al.
Physical Review B 94 (24) (2016)
https://doi.org/10.1103/PhysRevB.94.241118

Fermi surface studies of the charge-density-wave state of the quasi-two-dimensional monophosphate tungsten bronze P4W12O44

U. Beierlein, C. Schlenker, J. Dumas and M. Greenblatt
Physical Review B 67 (23) 235110 (2003)
https://doi.org/10.1103/PhysRevB.67.235110

Magnetoresistance properties of quasi-two-dimensional charge-density wave compounds AMo6O17 (A=Na, K, and Tl)

Ming-Liang Tian, Song Yue, Shiyan Li, Yuheng Zhang and Jing Shi
Journal of Applied Physics 89 (6) 3408 (2001)
https://doi.org/10.1063/1.1341210

P_{4}W_{20}O_{68}: A complex charge-density-wave modulated structure with an antiferroelectric-like lattice distortion

P. Roussel, Ph. Labbé, H. Leligny, and D. Groult
Physical Review B 62 (1) 176 (2000)
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Magnetotransport and thermopower properties of the quasi-two-dimensional charge-density-wave compounds (PO2)4(WO3)2m(m=4,6)

C. Hess, C. Schlenker, J. Dumas, M. Greenblatt and Z. S. Teweldemedhin
Physical Review B 54 (7) 4581 (1996)
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Electron Microscopy Study of the Incommensurate Charge Density Wave States of the Quasi-Two-Dimensional P 4 W 24 O 80 Bronze

Y Yan, M Kleman, C. Le Touze, et al.
Europhysics Letters (EPL) 30 (1) 49 (1995)
https://doi.org/10.1209/0295-5075/30/1/009