621 |
Atomistic-To-Continuum Modeling Of The Detachment Of A Graphene SheetMatar, Mona 16 September 2014 (has links)
No description available.
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622 |
Deformation of a Graphene Sheet Driven by Lattice Mismatch with a Supporting SubstrateStanek, Lucas James 20 November 2018 (has links)
No description available.
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623 |
Scanning Tunneling Microscopy of Two-Dimensional MaterialsGambrel, Grady A. 09 October 2017 (has links)
No description available.
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624 |
NANOMATERIALS-BASED SENSORS FOR PEROXYNITRITE DETECTION AND QUANTIFICATIONKalil, Haitham Fawzy Mohamed January 2017 (has links)
No description available.
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625 |
Chemical Vapor Deposition of Silicon Oxycarbide Catalyzed Graphene NetworksGarman, Paul Douglas 18 September 2018 (has links)
No description available.
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626 |
Graphene-enhanced Polymer Bulk-heterojunction Solar CellsYu, Fei 10 September 2015 (has links)
No description available.
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627 |
Performance and Active Layer Morphology of P3HT-PCPDTBT Organic Photovoltaic CellsMulderig, Andrew J. 28 June 2016 (has links)
No description available.
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628 |
Vibration analysis of a carbon nanotube in the presence of a graphene sheetNimmalapalli, Sunny Rahul 21 October 2016 (has links)
No description available.
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629 |
Carbon Nanomaterials Deposition in an Alumina MicrocombustorKellie, Benjamin M. 25 June 2012 (has links)
No description available.
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630 |
Fabrication and Optical Properties of Upconverting Nanoparticle/Graphene HybridsSouissi, Fathi 05 January 2024 (has links)
Over the past decade, graphene/nanomaterial hybrids have gained a great interest in various applications due to their unique optical properties. This work explores lanthanide doped upconverting nanoparticles (UCNPs)/graphene hybrid nanomaterials. Here, core/shell structures comprising β-NaGdF4:Y b3+(20%),Er3+(2%)@NaGdF4 and α-NaGdF4:Y b3+(20%), Er3+(2%)@NaGdF4 with oleate as capping agent were synthesized and characterized. The choice of lanthanide ions (Yb3+ and Er3+) and their concentrations plays an important role to make these nanoparticles undergo two optical processes (upcoversion and downshifting)
capable to convert near-infrared excitation to visible and near-infrared emission. In order to make hybrid systems, these nanoparticles were combined with graphene films. The morphology and the optical behavior of the hybrid samples were studied by microscope and hyperspectral imaging. The multi-energy sublevels from the 4f electronic configuration of lanthanides, their long excited state lifetime and the high carrier mobility of the graphene expected to open an exciting possibility of interaction, however, UCNPs/Graphene hybrid nanomaterial exhibits a minimal response when subjected to 980 nm laser illumination.
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