Symposium W – Nanotubes, Fullerenes, Nanostructured and Disordered Carbon
Research Article
Comparison of CPM, PDS and Optical Transmittance of Amorphous Carbon Nitride Films Made by a Nitrogen Radical Sputter Method
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- 21 March 2011, W12.3.1
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In Search of the Molecular Triplet of C60 using Low Temperature Raman Spectroscopy.
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- 21 March 2011, W1.10.1
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Encapsulated Molecules in Carbon Nanotubes: Structure and Properties
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- 21 March 2011, W1.3.1
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Incorporation of Hydrogen and Oxygen into (t)a-C:H Thin Films Deposited using DECR plasma (*)
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- 21 March 2011, W10.3.1
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Electrical Property of Vertically Grown Carbon Nanotube and its Application to the Nanofunctional Devices
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- 21 March 2011, W9.3.1
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From Diamond to Carbon Nanotube Field Emitter
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- 21 March 2011, W6.1.1
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Synthesis of Ultrathin Ta-C Films by Twist-Filtered Cathodic Arc Carbon Plasmas
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- 21 March 2011, W11.1.1
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A Model to Interpret the Raman Spectra of Disordered, Amorphous and Nanostructured Carbons
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- 21 March 2011, W11.5.1
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Nano-Structured Amorphous Carbon Films Synthesised Using Decr Plasma
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- 21 March 2011, W12.2.1
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C60Clusters Self-Assembly in One-beam Optical Trap
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- 21 March 2011, W1.6.1
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External Chemical Reactivity of Fullerenes and Nanotubes
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- 21 March 2011, W1.5.1
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Physical Interactions of Carbon Nanotubes and Conjugated Polymers
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- 21 March 2011, W4.5.1
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Endo-fullerenes and Doped Bucky Onions as Seed Materials for Solid State Quantum Bits
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- 21 March 2011, W1.8.1
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Designability of Graphitic Cones
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- 21 March 2011, W2.6.1
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Synthesis of Vertically Aligned Carbon Nanofiber Films by RF Magnetron Sputtering
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- 21 March 2011, W3.1.1
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Preferential Growth of Carbon Nanotubes/Nanofibers Using Lithographically Patterned Catalysts
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- 21 March 2011, W9.1.1
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Chemical Bonding of Polymer on Carbon Nanotube
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- 21 March 2011, W4.7.1
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Studies on the Interaction of Water-Soluble Fullerols with BSA and the Effects of Metallic Ions
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- 21 March 2011, W7.4.1
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Spontaneous Formation and Stability of GaP Cage Structures: A Theoretical Prediction of a New Fullerene
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- 21 March 2011, W2.8.1
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Density Functional Based Tight Binding Study of C2 and CN Deposition On (100) Diamond Surface
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- 21 March 2011, W12.11.1
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