Download Graphene. Fundamentals and emergent applications by Jamie H. Warner PDF

By Jamie H. Warner

Providing basic wisdom essential to comprehend graphene’s atomic constitution, band-structure, exact houses and an outline of groundbreaking present and emergent functions, this new instruction manual is vital interpreting for fabrics scientists, chemists and physicists.

Since the 2010 physics Nobel Prize provided to Geim and Novosolev for his or her groundbreaking paintings setting apart graphene from bulk graphite, there was an incredible surge in curiosity within the quarter. This has resulted in a number of information books on graphene. even if, for any such gigantic influx of recent entrants, the present literature is strangely mild, focusing completely on present learn or books on prior "hot subject" allotropes of carbon.

This e-book covers primary basis of the constitution, estate, characterization equipment and purposes of graphene, besides delivering the required wisdom of graphene’s atomic constitution, the way it pertains to its band-structure and the way this in flip results in the fantastic houses of graphene. And so it presents new graduate scholars and post-docs with a source that equips them with the data to adopt their examine.

  • Discusses graphene’s basic constitution and homes, appearing as a time-saving handbook for proven research
  • Demonstrates a hundred+ fine quality graphical representations, supplying the reader with transparent photos to exhibit advanced situations
  • Reviews characterization recommendations appropriate to grapheme, equipping the reader with experimental wisdom correct for sensible use instead of simply theoretical understanding

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Additional info for Graphene. Fundamentals and emergent applications

Example text

GNRs with widths as small as 5 nm and an aspect ratio of 60:1 have also been produced (Pickard and Scipioni, 2009). e. 20 nm width at the ends and 5 nm width in the middle of the GNR, have been fabricated, highlighting the versatility of this structuring tool (Pickard and Scipioni, 2009). If the lattice orientation of the graphene layer is known it should, in principle, be possible to structure GNRs with armchair or zigzag edges. Due to the small probe size, the edges should be fairly smooth; however, it remains an open question if atomic resolution can be achieved.

Stat. Sol. A 206, 1117–1122. , 2009. Controlled ripple texturing of suspended graphene and ultrathin graphite membranes. Nature Nanotechnol. 4, 562–566. , 2006. Electronic structure and stability of semiconducting graphene nanoribbons. Nano Lett. 6, 2748–2754. , 2008. Evaluation of solutionprocessed reduced graphene oxide films as transparent conductors. ACS Nano 2, 463–470. , 2009. Precision cutting and patterning of graphene with helium ions. Nanotechnol. 20, 455301. , 1993. Cobalt-catalysed growth of carbon nanotubes with single-atomic-layer walls.

Evaluation of solutionprocessed reduced graphene oxide films as transparent conductors. ACS Nano 2, 463–470. , 2009. Precision cutting and patterning of graphene with helium ions. Nanotechnol. 20, 455301. , 1993. Cobalt-catalysed growth of carbon nanotubes with single-atomic-layer walls. Nature 363, 605–607. , 2009. Porous graphenes: two-dimensional polymer synthesis with atomic precision. Chem. Commun. 45, 6919–6921. , 2010. Nanopatterning of graphene with crystallographic orientation control.

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