
PDF Publication Title:
Text from PDF Page: 269
References 343. MalvernInstrumentsLtd., Dynamic Light Scattering, http://www.malvern.com/en/products/technology/dynamic-light- scattering/default.aspx, Accessed 12th November, 2014. 344. A. Liese and L. Hilterhaus, Chemical Society Reviews, 2013, 42, 6236-6249. 345. C. C. Kao, PhD Thesis, University of Manchester, 2008. 346. L. Deng, PhD Thesis, University of Manchester, 2010. 347. B. Zhao, M. E. Itkis, S. Niyogi, H. Hu, J. Zhang and R. C. Haddon, The Journal of Physical Chemistry B, 2004, 108, 8136-8141. 348. V. Chabot, B. Kim, B. Sloper, C. Tzoganakis and A. Yu, Sci. Rep., 2013, 3. 349. R. Su, S. F. Lin, D. Q. Chen and G. H. Chen, The Journal of Physical Chemistry C, 2014, 118, 12520-12525. 350. C. Vallés, C. Drummond, H. Saadaoui, C. A. Furtado, M. He, O. Roubeau, L. Ortolani, M. Monthioux and A. Pénicaud, Journal of the American Chemical Society, 2008, 130, 15802-15804. 351. P. Nemes-Incze, Z. Osváth, K. Kamarás and L. P. Biró, Carbon, 2008, 46, 1435-1442. 352. A. O’Neill, U. Khan and J. N. Coleman, Chemistry of Materials, 2012, 24, 2414- 2421. 353. L. Gong, PhD Thesis, University of Manchester, 2012. 354. M. Lazzeri and F. Mauri, Physical Review Letters, 2006, 97, 266407. 355. J. Yan, Y. Zhang, P. Kim and A. Pinczuk, Physical Review Letters, 2007, 98, 166802. 356. S. Berciaud, S. Ryu, L. E. Brus and T. F. Heinz, Nano letters, 2008, 9, 346-352. 357. R. R. Nair, W. Ren, R. Jalil, I. Riaz, V. G. Kravets, L. Britnell, P. Blake, F. Schedin, A. S. Mayorov, S. Yuan, M. I. Katsnelson, H.-M. Cheng, W. Strupinski, L. G. Bulusheva, A. V. Okotrub, I. V. Grigorieva, A. N. Grigorenko, K. S. Novoselov and A. K. Geim, Small, 2010, 6, 2877-2884. 358. S. Hang, Z. Moktadir and H. Mizuta, Carbon, 2014, 72, 233-241. 359. A. Ott, I. Verzhbitskiy, J. Clough, A. Eckmann, T. Georgiou and C. Casiraghi, Nano Research, 2014, 7, 338-344. 360. F. Tuinstra and J. L. Koenig, The Journal of Chemical Physics, 1970, 53, 1126-1130. 361. J. N. Coleman, M. Lotya, A. O’Neill, S. D. Bergin, P. J. King, U. Khan, K. Young, A. Gaucher, S. De, R. J. Smith, I. V. Shvets, S. K. Arora, G. Stanton, H.-Y. Kim, K. Lee, G. T. Kim, G. S. Duesberg, T. Hallam, J. J. Boland, J. J. Wang, J. F. Donegan, J. C. Grunlan, G. Moriarty, A. Shmeliov, R. J. Nicholls, J. M. Perkins, E. M. Grieveson, K. Theuwissen, D. W. McComb, P. D. Nellist and V. Nicolosi, Science, 2011, 331, 568- 571. 362. H. G. Barth and R. B. Flippen, Analytical Chemistry, 1995, 67, 257R-272R. 363. J. A. Fagan, M. L. Becker, J. Chun and E. K. Hobbie, Advanced Materials, 2008, 20, 1609-1613. 364. J. A. Fagan, M. L. Becker, J. Chun, P. Nie, B. J. Bauer, J. R. Simpson, A. Hight-Walker and E. K. Hobbie, Langmuir, 2008, 24, 13880-13889. 365. A. A. Green and M. C. Hersam, The Journal of Physical Chemistry Letters, 2009, 1, 544-549. 366. X. Sun, D. Luo, J. Liu and D. G. Evans, ACS Nano, 2010, 4, 3381-3389. 367. F. Bonaccorso, M. Zerbetto, A. C. Ferrari and V. Amendola, The Journal of Physical Chemistry C, 2013, 117, 13217-13229. 269PDF Image | PRODUCTION AND APPLICATIONS OF GRAPHENE AND ITS COMPOSITES
PDF Search Title:
PRODUCTION AND APPLICATIONS OF GRAPHENE AND ITS COMPOSITESOriginal File Name Searched:
graphene-production-applications.PDFDIY PDF Search: Google It | Yahoo | Bing
Salgenx Redox Flow Battery Technology: Power up your energy storage game with Salgenx Salt Water Battery. With its advanced technology, the flow battery provides reliable, scalable, and sustainable energy storage for utility-scale projects. Upgrade to a Salgenx flow battery today and take control of your energy future.
| CONTACT TEL: 608-238-6001 Email: greg@infinityturbine.com | RSS | AMP |