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  • graphene book download extras

    Send us your questions or comments

Send us your questions or comments about the book

Do you have any questions or comments about the book? Any doubts that you couldn’t solve after trying hard, very hard?

Then you might better call Luis!

Here is how to proceed:

(1) First, make an effort to clarify your question as succinctly as possible.
(2) Write your question clearly referencing the section of the book or exercise that you are following.
(3) Send an email to Luis (check here for the address) with your question or comments with the subject “Questions for Luis – www.introductiontographene.org” .I receive many requests and cannot warrant an answer but I promise that I’ll do my best to provide a prompt feedback!

You are welcome to submit your answers in latex format. Selected responses will be published in this website.

Codes, tips, etc.

Before new year’s break

Before new year’s break

This has been a hectic year full of great discoveries and developments in the field of graphene and other 2D materials. But now we wanted to propose our readers to take a breath and make a ludic stop. Following Symmetry Magazine we are proposing to turn into the art of cutting paper snowflakes. These are…

Stephan’s recursion methods

One of the most efficient methods available for computing the Density of States (DoS) and the transport properties, specially in samples containing a large number of atoms, is the recursion method explained in Appendix D of “Introduction to Graphene-based Nanomaterials”. Here we provide (by courtesy of Stephan Roche) a numerical code written in fortran and…

Recursive Green’s functions and self-energies

Here we provide a simple fortran 90 code that implements the recursive Green’s functions techniques for calculating the self-energy of a semi-infinite lead as described in Appendix C of “Introduction to Graphene-Based Nanomaterials”. To call this routine you must provide an array with matrices containing the hoppings between the layers as well as the diagonal…

ABINIT input files for graphene nanoribbons

ABINIT input files for armchair and zigzag graphene nanoribbons (by courtesy of Jean-Christophe Charlier). These inputs allow to calculate the structural and electronic properties of these GNRs (including spin-polarization in the zigzag case due to the potential magnetization at the edges). The PAW pseudopotentiels for carbon and hydrogen are also included. agnr.in zgnr.in 1h-gga-uspp.paw 6c-gga-uspp.paw  

Python packages for graphene-based materials and beyond

Python is one of the most versatile languages for coding. It allows fast coding of complex algorithms and the community working with Python is growing at a fast pace. Here we recommend two packages written for python: PythTB: Python Tight-Binding is a package developed at Rutgers University by the group of David Vanderbilt. It allows to compute…

News and updates

Destination Genoa

Destination Genoa

Last March we had a great edition of the Graphene conferences. Graphene 2015 took place at the Bilbao Exhibition Centre from March 10-13 (2015), a great location for the large number of participants who enjoyed the talks by some of the most inspiring speakers in the field. Personally, my favorite ones were those by Antonio…

Graphene Canada 2015

Graphene Canada 2015

Montreal (Canada) will host the 1st edition of the Graphene & 2D Materials International Conference and Exhibition: October 14-16, 2015. The Graphene Conference will be a 3 days event that meant to gather the key players of the Graphene Community and related sectors. This event is launched following the lack of meetings in the field in…

Announcement “ICREA Workshop on Graphene Nanobiosensors – May 2015″

The Workshop on Graphene Nanobiosensors will take place in Barcelona from May 25 to May 26, 2015. This unique event will bring together the most relevant scientists working in fields related to the design of nanobiosensors and nanobiosystems based on graphene. Do not miss this opportunity! For more information visit: http://graphsense.icn2.cat/

Before new year’s break

Before new year’s break

This has been a hectic year full of great discoveries and developments in the field of graphene and other 2D materials. But now we wanted to propose our readers to take a breath and make a ludic stop. Following Symmetry Magazine we are proposing to turn into the art of cutting paper snowflakes. These are…

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