11. Ponnamma D, Sadasivuni KK, Strankowski M, Moldenaers P, Thomas S, Grohens Y (2013)
Interrelated shape memory and Payne effect in polyurethane/graphene oxide nanocomposites.
RSC Adv 3:16068–16079
12. Sadasivuni KK, Saiter A, Gautier N, Thomas S, Grohens Y (2013) Effect of molecular
interactions on the performance of poly (isobutylene-co-isoprene)/graphene and clay
nanocomposites. Colloid Polym Sci 291:1729–1740
13. Slonczewski JC, Weiss PR (1958) Band structure of graphite. Phys Rev 109:272
14. Castro Neto AH, Guinea F, Peres NMR, Novoselov KS, Geim AK (2009) The electronic
properties of grapheme. Rev Mod Phys 81:109
15. Novoselov K, Geim A, Morozov S, Jiang D, Zhang Y, Dubonos S, Grigorieva I, Firsov A
(2004) Electric field effect in atomically thin carbon films. Science 306:666
16. Abergel DSL, Apalkov V, Berashevich J, Ziegler K, Chakraborty T (2010) Properties of
graphene: a theoretical perspective. Adv Phys 59:261
17. Allen MJ, Tung VC, Kaner RB (2009) Honeycomb carbon: a review of graphene. Chem Rev
110:132–145
18. Yazyev OV (2010) Emergence of magnetism in graphene materials and nanostructures. Rep
Prog Phys 73:056501
19. Cresti A, Nemec N, Biel B, Niebler G, Triozon F, Cuniberti G, Roche S (2008) Charge
transport in disordered graphene-based low dimensional materials. Nano Res 1:361
20. Beenakker CWJ (2008) Colloquium: Andreev reflection and Klein tunneling in graphene. Rev
Mod Phys 80:1337
21. Sarma SD, Adam S, Hwang EH, Rossi E (2010) Electronic transport in two dimensional
graphene. Rev Mod Phys 83:407
22. Mucciolo ER, Lewenkopf CH (2010) Disorder and electronic transport in graphene. J Phys
Condens Matter 22:273201
23. Bolotin KI, Sikes KJ, Hone J, Stormer HL, Kim P (2008) Temperature-dependent transport in
suspended graphene. Phys Rev Lett 101:096802
24. Du X, Skachko I, Barker A, Andrei EY (2008) Approaching ballistic transport in suspended
graphene. Nat Nano 3:491
25. Blake P, Brimicombe PD, Nair RR, Booth TJ, Jiang D, Schedin F, Ponomarenko LA, Morozov
SV, Gleeson HF, Hill EW, Geim AK, Novoselov KS (2008) Graphene-based liquid crystal
device. Nano Lett 8:1704
26. Hernandez Y, Nicolosi V, Lotya M, Blighe FM, Sun Z, De S (2008) High-yield production of
graphene by liquid-phase exfoliation of graphite. Nat Nanotechnol 3:563
27. Stankovich S, Dikin DA, Piner RD, Kohlhaas KA, Kleinhammes A, Jia Y, Wu Y, Nguyen
SBT, Ruoff RS (2007) Synthesis of graphene-based nanosheets via chemical reduction of
exfoliated graphite oxide. Carbon 45:1558
28. May JW (1969) Platinum surface LEED rings. Surf Sci 17:267
29. Shelton JC, Patil HR, Blakely JM (1974) Equilibrium segregation of carbon to a nickel (111)
surface: a surface phase transition. Surf Sci 43:493
30. Eizenberg M, Blakely JM (1979) Carbon monolayer phase condensation on Ni (111). Surf Sci
82:228
31. Somani PR, Somani SP, Umeno M (2006) Planer nano-graphenes from camphor by CVD.
Chem Phys Lett 430:56
32. Hummers WOR (1958) Preparation of graphite oxide. J Am Chem Soc 80:1339
33. Li D, Muller MB, Gilje S, Kaner RB, Wallace GG (2008) Processable aqueous dispersions of
graphene nanosheets. Nat Nanotechnol 3:101
34. Cai WW, Piner RD, Stademann FJ, Park S, Shaibat MA, Ishii Y (2008) Synthesis and solidstate NMR structural characterization of
13
C labeled graphite oxide. Science 321:1815
35. Gao W, Alemany LB, Ci L, Ajayan PM (2009) New insights into the structure and reduction of
graphite oxide. Nat Chem 1:403
36. Sluiter MHF, Kawazoe Y (2003) Cluster expansion method for adsorption: application to
hydrogen chemisorption on graphene. Phys Rev B 68:085410
56
K.K. Sadasivuni and Y. Grohens
Interrelated shape memory and Payne effect in polyurethane/graphene oxide nanocomposites.
RSC Adv 3:16068–16079
12. Sadasivuni KK, Saiter A, Gautier N, Thomas S, Grohens Y (2013) Effect of molecular
interactions on the performance of poly (isobutylene-co-isoprene)/graphene and clay
nanocomposites. Colloid Polym Sci 291:1729–1740
13. Slonczewski JC, Weiss PR (1958) Band structure of graphite. Phys Rev 109:272
14. Castro Neto AH, Guinea F, Peres NMR, Novoselov KS, Geim AK (2009) The electronic
properties of grapheme. Rev Mod Phys 81:109
15. Novoselov K, Geim A, Morozov S, Jiang D, Zhang Y, Dubonos S, Grigorieva I, Firsov A
(2004) Electric field effect in atomically thin carbon films. Science 306:666
16. Abergel DSL, Apalkov V, Berashevich J, Ziegler K, Chakraborty T (2010) Properties of
graphene: a theoretical perspective. Adv Phys 59:261
17. Allen MJ, Tung VC, Kaner RB (2009) Honeycomb carbon: a review of graphene. Chem Rev
110:132–145
18. Yazyev OV (2010) Emergence of magnetism in graphene materials and nanostructures. Rep
Prog Phys 73:056501
19. Cresti A, Nemec N, Biel B, Niebler G, Triozon F, Cuniberti G, Roche S (2008) Charge
transport in disordered graphene-based low dimensional materials. Nano Res 1:361
20. Beenakker CWJ (2008) Colloquium: Andreev reflection and Klein tunneling in graphene. Rev
Mod Phys 80:1337
21. Sarma SD, Adam S, Hwang EH, Rossi E (2010) Electronic transport in two dimensional
graphene. Rev Mod Phys 83:407
22. Mucciolo ER, Lewenkopf CH (2010) Disorder and electronic transport in graphene. J Phys
Condens Matter 22:273201
23. Bolotin KI, Sikes KJ, Hone J, Stormer HL, Kim P (2008) Temperature-dependent transport in
suspended graphene. Phys Rev Lett 101:096802
24. Du X, Skachko I, Barker A, Andrei EY (2008) Approaching ballistic transport in suspended
graphene. Nat Nano 3:491
25. Blake P, Brimicombe PD, Nair RR, Booth TJ, Jiang D, Schedin F, Ponomarenko LA, Morozov
SV, Gleeson HF, Hill EW, Geim AK, Novoselov KS (2008) Graphene-based liquid crystal
device. Nano Lett 8:1704
26. Hernandez Y, Nicolosi V, Lotya M, Blighe FM, Sun Z, De S (2008) High-yield production of
graphene by liquid-phase exfoliation of graphite. Nat Nanotechnol 3:563
27. Stankovich S, Dikin DA, Piner RD, Kohlhaas KA, Kleinhammes A, Jia Y, Wu Y, Nguyen
SBT, Ruoff RS (2007) Synthesis of graphene-based nanosheets via chemical reduction of
exfoliated graphite oxide. Carbon 45:1558
28. May JW (1969) Platinum surface LEED rings. Surf Sci 17:267
29. Shelton JC, Patil HR, Blakely JM (1974) Equilibrium segregation of carbon to a nickel (111)
surface: a surface phase transition. Surf Sci 43:493
30. Eizenberg M, Blakely JM (1979) Carbon monolayer phase condensation on Ni (111). Surf Sci
82:228
31. Somani PR, Somani SP, Umeno M (2006) Planer nano-graphenes from camphor by CVD.
Chem Phys Lett 430:56
32. Hummers WOR (1958) Preparation of graphite oxide. J Am Chem Soc 80:1339
33. Li D, Muller MB, Gilje S, Kaner RB, Wallace GG (2008) Processable aqueous dispersions of
graphene nanosheets. Nat Nanotechnol 3:101
34. Cai WW, Piner RD, Stademann FJ, Park S, Shaibat MA, Ishii Y (2008) Synthesis and solidstate NMR structural characterization of
13
C labeled graphite oxide. Science 321:1815
35. Gao W, Alemany LB, Ci L, Ajayan PM (2009) New insights into the structure and reduction of
graphite oxide. Nat Chem 1:403
36. Sluiter MHF, Kawazoe Y (2003) Cluster expansion method for adsorption: application to
hydrogen chemisorption on graphene. Phys Rev B 68:085410
56
K.K. Sadasivuni and Y. Grohens
