Phacheerak, Kanoknan
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Preferred name
Phacheerak, Kanoknan
Alternative Name
Phacheerak, Kanoknan Sarasamak
Main Affiliation
Email
kanoknan.ph@kmitl.ac.th
3 results
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Item type:Publication, First-principles investigations of structural and elastic properties of LiGaO2 under pressure(2019-09-01) ;Sailuam, Wutthigrai ;Busayaporn, Wutthikrai ;Limpijumnong, SukitThe structural and elastic properties of the LiGaO<inf>2</inf> with an orthorhombic-type structure (Pna2<inf>1</inf>-LGO) under pressure were investigated using first-principles calculations. The calculated structural parameters and elastic constants show a good agreement with the experimental and other theoretical values. The structural parameters and elastic constants of Pna2<inf>1</inf>-LGO under various pressures are calculated. All structural parameters are found to be decreased with pressure. The elastic constants are found to increase with pressure, except for C<inf>44</inf> and C<inf>55</inf>. It was also found that the elastic constants C<inf>11</inf>, C<inf>22</inf>, and C<inf>33</inf> which represent the elasticity in length are always larger than the elastic constants C<inf>12</inf>, C<inf>13</inf>, C<inf>23</inf>, C<inf>44</inf>, C<inf>55</inf>, and C<inf>66</inf> which represent the elasticity in shape at the same pressure. The details of pressure dependences of the structural and elastic constants are also presented and discussed. - Some of the metrics are blocked by yourconsent settings
Item type:Publication, First principles study on structural and electronic properties of Li, Na and K - Intercalated zinc phthalocyanine(2018-01-01) ;Nuleg, Witoon; Recently, alkali metals doped zinc phthalocyanine (ZnPc) was found to be an effective method for tuning electronic properties of ZnPc. In this research, the effect of alkali metal atoms (Li, Na, and K) intercalation on structural and electronic properties of ZnPc in β structure was investigated by first principles calculations based on density function theory (DFT). The generalized gradient approximation (GGA) is used to describe the exchange-correlation with the projector-augmented wave (PAW) method. The calculated lattice constants, bond lengths and bond angles of pristine ZnPc are in good agreement with other calculations and experimental data. The calculated band gap energy of pristine ZnPc is found to be 1.327 eV. The lattice constants, molecular arrangement, bond lengths and bond angles are sensitive to intercalating alkali metal atoms. It was found that intercalating alkali metal atoms induce significant changes in the band gap energy of ZnPc. The changes in band gap energy with intercalating alkali metal atoms are discussed. - Some of the metrics are blocked by yourconsent settings
Item type:Publication, Structural and electronic properties of β-CuPc: First principles study(2016-01-01) ;Nuleg, Witoon; Structural and electronic properties of CuPc in β structure (β-CuPc) were investigated by first principles calculations. The generalized gradient approximation (GGA) was used to describe the exchange-correlation with the projector-augmented wave (PAW) method. Under ambient pressure, the calculated structural parameters were calculated and found to be in good agreement with other experimental and theoretical values. The calculated direct band gap was found to be 0.683 eV. The results of electronic properties under various pressures were presented. To investigate the properties under pressure, β-CuPc was calculated at several reduced volumes. It was found that the energy gap decreases when the pressure increases. The behaviors of electronic properties under pressure were also discussed.
