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First-Principles Insights on the Bonding Mechanism and Electronic Structure of SWCNT and Oxygenated-SWCNT Functionalized by Cellulose Biopolymer
被引:2
作者:
Munio, Art Anthony Z.
[1
,2
]
Pido, Alvanh Alem G.
[3
]
Ambolode, Leo Cristobal C.
[1
,4
]
机构:
[1] Mindanao State Univ, Iligan Inst Technol, Phys Dept, A Bonifacio Ave, Iligan 9200, Philippines
[2] Jose Rizal Mem State Univ, Coll Arts & Sci, Gov Guading Adaza St, Dapitan City 7120, Zamboanga Del N, Philippines
[3] Mindanao State Univ, Phys Dept, Marawi Campus, Marawi City 9700, Philippines
[4] Mindanao State Univ, Premier Res Inst Sci & Math, Iligan Inst Technol, A Bonifacio Ave, Iligan 9200, Philippines
来源:
NANO HYBRIDS AND COMPOSITES
|
2023年
/
40卷
关键词:
bonding mechanism;
electronic structures;
cellulose biopolymer;
carbon nanotubes;
oxygenated carbon nanotube;
non-covalent functionalization;
density functional theory;
CARBON NANOTUBES;
MOLECULAR-DYNAMICS;
ADSORPTION;
GRAPHENE;
D O I:
10.4028/p-pNM7bg
中图分类号:
TB3 [工程材料学];
学科分类号:
0805 ;
080502 ;
摘要:
Here, we report the bonding mechanism and electronic structure of single-walled carbon nanotube and oxygenated single-walled carbon nanotube functionalized by cellulose chain using first -principles density functional theory. Analysis of the optimized molecular configuration and charge redistribution of the nanohybrid indicates that the cellulose chain binds with the prototype single -walled carbon nanotube and oxygenated single-walled carbon nanotube via physisorption. The cellulose chain adsorption on the single-walled carbon nanotube preserved its electronic structure. On the other hand, the electronic structure of the oxygenated single-walled carbon nanotube and cellulose complex reveals that the electronic states of the cellulose tend to populate in the forbidden gap, thus, lowering the bandgap of the overall complex. The electronic structure of the complex can be considered as the superposition of its constituents in which no significant hybridization of the orbital characters is observable. The findings confirm that cellulose is indeed suitable for the non-covalent functionalization of single-walled carbon nanotubes and provide new insights into the electronic structure of the oxygenated single-walled carbon nanotube/cellulose complex.
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页码:51 / 63
页数:13
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