Sources of Nano-information As suggested by the class

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1 Sources of Nano-information As suggested by the class Brian Ellis Analytical Chemistry Biophysical Journal Chemistry of Materials P.M. Ajayan (Rensselaer Polytechnic Institute) G.M. Whitesides (Harvard) J.-O. Malm (Lund) National Centre for High Resolution Electron Microscopy, Lund, Sweden Drexel University, Philadelphia, PA Centre for Nanomaterials Research, Dartmouth College, Hanover, NH G.M. Whitesides Nanoscience,, and Chemistry in Small 1(2) L. He and C.-S. Toh Recent Advances in Analytical Chemistry A Material Approach, Analytica Chimica Acta 556(1), 1 15 (2006) A.C. Grimsdale and K. Muellen The chemistry of organic nanomaterials, Angewandte Chemie, International Edition 44(35) (2205) Antony Han Fullerenes, Nanotubes, and Carbon Nanostructures Applied Physics Letters Nano Letters G.A. Ozin (Toronto) M.H. Nayfeh (Illinois, Urbana-Champaign) A. Stein (Minnesota) University of Toronto Nano Research Center at Technical University of Denmark MIT M.S. Dresselhaus Science of Fullerenes and Carbon Nanotubes Academic Press (1996).

2 G.A. Ozin Nanochemistry: A Chemical Approach to Nanomaterials Royals Society of Chemistry (2005). A. Stein, Advances in Microporous and Mesoporous Solids Highlights of Recent Progress, Advanced Materials (2003) David Ji Microporous and Mesoporous Materials Nano Letters G.A. Ozin (Toronto) G. Stucky (UC Santa Barbara) J. Wang (Arizona State) Harvard University Rice University University of Sussex Chemistry and Properties of Nanocrystals of Different Shapes, Chem. Rev (2005). Artificial Molecular Rotors, Chem. Rev (2005). New Approahces to Nanofabrication: Molding, Printing, and Other Techniques, Chem. Rev (2005). nanotechweb.org Maryam Ebrahimi Journal of Vacuum Science and Technology B Journal of Physical Chemistry B J.R. Heath (USC) M.G. Bawendi P. Alivisatos (UC Berkeley) IBM National Institute of (NINT) University of Alberta Kavli Institute of Nanoscience

3 Xu Zhang Journal of the American Chemical Society (JACS) Nature: Materials Nano Letters P. Alivisatos (UC Berkeley) G.M. Whitesides (Harvard) I. Willner (Hebrew University of Jerusalem) Cornell Nanoscale Science and Technology Facility Beckman Institute (Illinois, Urbana-Champaign) Los Alamos National Laboratory C. Joachim Review: To be nano or not be nano? Nature: Materials Feb. 4 (2005) p W.J. Parak, D. Gerion et al. Topic Review: Biological applications of colloidal nanocrystals 14 R15-27 (2003). W. Katz and I. Willner Integrated nanoparticles-biomolecule hybrid systems: synthesis, properties and applications Angew Chem. Int. Ed (2004). nanoforum.org Olivier Nguon Journal of Nanomaterials Journal of Nanoparticle Research Fullerenes, Nanotubes, and Carbon Nanostructures P. Alivisatos (UC Berkeley) R.A. Freitas (IMM) J.R. Heath (CalTech) Institute of (UK) Centre for Nanospace Technologies NanoQuébec (Canada) Nanoparticles: From Theory to Application, Ed. G. Schmid, Wiley (2004) Springer Handbook of, Ed. B. Bhushan, Springer- Verlag (2004)

4 : Integrated Processing Systems for Ultra-Precision and Ultra-Fine Products, Ed. N. Taniguchi, Oxford University Press (1996). mrsec.wisc.edu/edeetc/index.html Warren Courtney Virtual Journal of Nanoscale Science and Technology IEEE Transactions on C. Lowe (Cambridge) E. Drexler (Forsight Institute) E. Kalman (Hungarian Academy of Sciences) Sandia National Labs (USA) Foresight Institute (USA) Institute of (UK) Nanoscience, CRC Press. Nanotribology Nanostructured Materials Processing, properties, and Applications nanoengineering.mit.edu Andrew Van Bommel Physica E: Low Dimensional Systems and Nanostructures International Journal of Nanoscience Colloids and Surfaces A A. Cleland (UC Santa Barbara) Y. Gogotsi (Drexel University) I.K. Schuller (UC San Diego) Center for Nanoscale Materials (Argonne National Labs, USA) The Nanostructures Laboratory (MIT, USA) Centre for Nanoscale Science and Technology (Notre Dame, USA)

5 Self-Assembled Nanostructures. Nanost6ructure Science and Technology, J.Z. Zhang (2003) Nanostructured Oxides in Chemistry: Characterization and Properties Chem. Rev. 104(9) (2004). Overview of Nanoelectronic Devices, IEEE Proceedings, April nanotechweb.org Amy Zhao Thin Solid Films Journal of Physical Chemistry Nanoletters I. Yanashita (Japan) J. Ulstrup (Denmark) K.T. Leung (Waterloo!!!) Jingpeng Wang Journal of the American Chemical Society Advanced Materials Nanoletters Z.L. Wang (Georgia Tech) C.M. Lieber (Harvard) H. Masuda (Tokyo Metro University) National Institute of Materials Science NIMS (Japan) Centre for Nanoscale Materials (Argonne National Labs, USA) School of Science and Engineering (Georgia Tech) S.I. Stupp Introduction: Functional Nanostructures Chem. Rev. 105(4) (2005). N.L. Rosi and C.A. Mirkin Nanostructures in Biodiagnostics Chem. Rev. 105(4) (2005) M. Fernandez-Garcis, et al. Nanostructures Oxides in Chemistry: Characterization and Properties Chem Rev. 104(9) (2004).

6 electrochem.cwru.edu/ed/encycl/ Scott Allen Langmuir Journal of Colloids and Interface Science Physical Review Letters P. Grutter (McGill) W. Ho (UC Irvine) A. Zetti (UC Berkeley) C. Schafmeister (U Pitt.) Brockhouse Institute (McMaster) Joint Institute for Nanoscience and - PNNL UW Nasa Ames Research Centre Center for K.W. Kolasinski, Surface Science: Foundations of Catalysis and Nanoscience, Wiley (2002). B.L. Cushing, V.L. Kolesnichenko, C.J. O Connor, Chem. Rev., 104 (2004) K.E. Drexler, Engines of Creation: The Coming Era of Anchor Books (1986). pubs.acs.org/cen/nanotechnology/7842/7842nanotechnology.html cnie.org/nle/crsreports/science/st-48.cfm

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