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Carbon monoxide sensor using co-doped graphene nanoribbon optimized with DFT
Mapping Intimacies
◽
10.1063/5.0060913
◽
2021
◽
Author(s):
Deji
◽
Jyoti
◽
B. C. Choudhary
◽
Ramesh K. Sharma
Keyword(s):
Carbon Monoxide
◽
Graphene Nanoribbon
◽
Doped Graphene
◽
Co Doped
◽
Carbon Monoxide Sensor
Download Full-text
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Reduction Reaction
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Composite Catalyst
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High performance of a carbon monoxide sensor based on a Pd-doped graphene-tin oxide nanostructure composite
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Carbon Monoxide
◽
Tin Oxide
◽
High Performance
◽
Doped Graphene
◽
Carbon Monoxide Sensor
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Carbon-dioxide gas sensor using co-doped graphene nanoribbon: A first principle DFT study
Materials Today Proceedings
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10.1016/j.matpr.2021.01.451
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Author(s):
Deji
◽
Navjot Kaur
◽
B.C. Choudhary
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Keyword(s):
Carbon Dioxide
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Gas Sensor
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Graphene Nanoribbon
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Dft Study
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First Principle
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Carbon Dioxide Gas
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Doped Graphene
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Co Doped
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Single–atom manganese and nitrogen co-doped graphene as low-cost catalysts for the efficient CO oxidation at room temperature
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Author(s):
Mingming Luo
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Chao Liu
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Xiaopeng Qi
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Co Oxidation
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Room Temperature
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Low Cost
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Single Atom
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Doped Graphene
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Co Doped
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Promising photodynamic antimicrobial activity of polyimine substituted zinc phthalocyanine and its polycationic derivative when conjugated to nitrogen, sulfur, co-doped graphene quantum dots against Staphylococcus aureus
Photodiagnosis and Photodynamic Therapy
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2021
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Vol 34
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pp. 102300
Author(s):
Pinar Sen
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Tebello Nyokong
Keyword(s):
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◽
Quantum Dots
◽
Antimicrobial Activity
◽
Graphene Quantum Dots
◽
Zinc Phthalocyanine
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Doped Graphene
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Co Doped
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Multifunctional B/N Co‐Doped Graphene Interlayer for Fast and Stable Lithium‐Sulfur Batteries
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Lithium Sulfur Batteries
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Doped Graphene
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Co Doped
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Lithium Sulfur
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Double quantum dot-like transport in controllably doped graphene nanoribbon
Applied Physics Letters
◽
10.1063/5.0038419
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2021
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◽
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Quantum Dot
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Graphene Nanoribbon
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Double Quantum
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Doped Graphene
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N, S, P co-doped graphene-like carbon nanosheets developed via in situ engineering strategy of carbon pz-orbitals for highly efficient oxygen redox reaction
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10.1016/j.flatc.2021.100250
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Sixian Yao
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Carbon Nanosheets
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Highly Efficient
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Doped Graphene
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Improved oxygen reduction performance of a N, S co-doped graphene-like carbon prepared by a simple carbon bath method
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2021
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Author(s):
Xiao-wen Ye
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Li-bing Hu
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Gang Wang
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Feng Yu
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Oxygen Reduction
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Doped Graphene
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Co Doped
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High energy density supercapacitor based on N/B co-doped graphene nanoarchitectures and ionic liquid electrolyte
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Energy Density
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High Energy
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Liquid Electrolyte
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High Energy Density
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Ionic Liquid Electrolyte
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Doped Graphene
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