The effect of pressure on the band-gap energy in FePO4 and FeVO4

被引:4
|
作者
Lopez-Moreno, Sinhue [1 ,2 ]
Sanchez-Martin, Josu [3 ]
Bandiello, Enrico [4 ]
Bettinelli, Marco [5 ,6 ]
Bull, Craig L. [7 ,8 ]
Ridley, Christopher J. [7 ]
Errandonea, Daniel [3 ]
机构
[1] IPICYT, Div Mat Avanzados, CONACYT, Camino presa San Jose 2055 Col Lomas 4a secc, San Luis Potosi 78126, Mexico
[2] IPICYT, Ctr Nacl Supercomp, Div Mat Avanzados, Camino Presa San Jose 2055 Col Lomas 4a Secc, San Luis Potosi 78126, Mexico
[3] Univ Valencia, Dept Fis Aplicada, Inst Ciencia Mat, MALTA Consolider Team, E-46100 Valencia, Spain
[4] Univ Politecn Valencia, MALTA Consolider Team, Inst Diseno Fabricac & Prod Automatizada, Valencia 46022, Spain
[5] Univ Verona, Dept Biotechnol, Luminescent Mat Lab, Str Grazie 15, I-37134 Verona, Italy
[6] INSTM, UdR Verona, Str Grazie 15, I-37134 Verona, Italy
[7] Rutherford Appleton Lab, ISIS Facil, Didcot OX1 10QX, England
[8] Univ Edinburgh, Sch Chem, David Brewster Rd, Edinburgh EH9 3FJ, Scotland
关键词
Electronic properties; Absorption measurements; First-principles calculations; INITIO MOLECULAR-DYNAMICS; CATHODE MATERIAL; CRYSTAL; PHASE; TRANSITION; STABILITY; PROGRAM; PBCRO4; CRVO4;
D O I
10.1016/j.jpcs.2023.111604
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
In this work, we have studied the electronic structure of FePO4 and FeVO4 under high pressure by means of optical-absorption measurements and first-principles calculations. Samples of both compounds have been pressurized up to 6 GPa within a diamond-anvil cell to be characterized in the ultraviolet-visible-near infrared range. The optical-absorption measurements corroborated previously reported phase transitions: berlinite (P3121) -* CrVO4-type (Cmcm) in FePO4, and FeVO4-I (P1 ) -* FeVO4-I' (P1 ) -* FeVO4-II' (aMnMoO4-type, C2/m) in FeVO4. According to our experiments, FePO4 presents direct electronic band-gaps in both phases. In contrast, the low- and high-pressure phases of FeVO4 have indirect band-gaps. In both compounds, the bandgap energy decreases with pressure. The computed electronic band structure revealed that the population at valence band maxima (VBM) and conduction band minima (CBM) changes with pressure in both FePO4 and FeVO4. Pressure-induced changes in Fe coordination modulate the occupation at VBM and CBM, being more pronounced the consequences in FePO4 due to the shift from tetrahedral (FeO4) to octahedral (FeO6) coordination. We have also analyzed the charge density within the quantum theory of atoms in molecules (QTAIM) methodology to complement the electronic structure results by computing the Bader effective charges, the Laplacian, and ellipticity at the bond critical points for both compounds as a function of pressure.
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页数:7
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