Skip to main content
Erschienen in: Rheologica Acta 4/2018

20.02.2018 | Original Contribution

Filling the gap between transient and steady shear rheology of aqueous graphene oxide dispersions

verfasst von: Francesco Del Giudice, Benjamin V. Cunning, Rodney S. Ruoff, Amy Q. Shen

Erschienen in: Rheologica Acta | Ausgabe 4/2018

Einloggen

Aktivieren Sie unsere intelligente Suche, um passende Fachinhalte oder Patente zu finden.

search-config
loading …

Abstract

Even though the rheological behavior of aqueous graphene oxide (G-O) dispersions has been shown to be strongly time-dependent, only few transient measurements have been reported in the literature. In this work, we attempt to fill the gap between transient and steady shear rheological characterizations of aqueous G-O dispersions in the concentration range of 0.004 < ϕ < 3.5 wt%, by conducting comprehensive rheological measurements, including oscillatory shear flow, transient shear flow, and steady shear flow. Steady shear measurements have been performed after the evaluation of transient properties of the G-O dispersions, to assure steady-state conditions. We identify the critical concentration ϕ c = 0.08 wt% (where G-O sheets start to interact) from oscillatory shear experiments. We find that the rheology of G-O dispersions strongly depends on the G-O concentration ϕ. Transient measurements of shear viscosity and first normal stress difference suggest that G-O dispersions behave like nematic polymeric liquid crystals at ϕ/ϕ c = 25, in agreement with other work reported in the literature. G-O dispersions also display a transition from negative to positive values of the first normal stress difference with increasing shear rates. Experimental findings of aqueous graphene oxide dispersions are compared and discussed with models and experiments reported for nematic polymeric liquid crystals, laponite, and organoclay dispersions.

Sie haben noch keine Lizenz? Dann Informieren Sie sich jetzt über unsere Produkte:

Springer Professional "Technik"

Online-Abonnement

Mit Springer Professional "Technik" erhalten Sie Zugriff auf:

  • über 67.000 Bücher
  • über 390 Zeitschriften

aus folgenden Fachgebieten:

  • Automobil + Motoren
  • Bauwesen + Immobilien
  • Business IT + Informatik
  • Elektrotechnik + Elektronik
  • Energie + Nachhaltigkeit
  • Maschinenbau + Werkstoffe




 

Jetzt Wissensvorsprung sichern!

Springer Professional "Wirtschaft+Technik"

Online-Abonnement

Mit Springer Professional "Wirtschaft+Technik" erhalten Sie Zugriff auf:

  • über 102.000 Bücher
  • über 537 Zeitschriften

aus folgenden Fachgebieten:

  • Automobil + Motoren
  • Bauwesen + Immobilien
  • Business IT + Informatik
  • Elektrotechnik + Elektronik
  • Energie + Nachhaltigkeit
  • Finance + Banking
  • Management + Führung
  • Marketing + Vertrieb
  • Maschinenbau + Werkstoffe
  • Versicherung + Risiko

Jetzt Wissensvorsprung sichern!

Anhänge
Nur mit Berechtigung zugänglich
Fußnoten
1
According to the definition of Barnes et al. (1989), thixotropy (verbatim) “is the decrease (in time) of ... viscosity under constant shear stress or shear rate, followed by a gradual recovery when the stress or shear rate is removed.”
 
Literatur
Zurück zum Zitat Abou B, Bonn D, Meunier J (2003) Nonlinear rheology of laponite suspensions under an external drive. J Rheol 47(4):979–988CrossRef Abou B, Bonn D, Meunier J (2003) Nonlinear rheology of laponite suspensions under an external drive. J Rheol 47(4):979–988CrossRef
Zurück zum Zitat Aboutalebi S H, Gudarzi M M, Zheng Q B, Kim J K (2011) Spontaneous formation of liquid crystals in ultralarge graphene oxide dispersions. Adv Funct Mater 21(15):2978–2988CrossRef Aboutalebi S H, Gudarzi M M, Zheng Q B, Kim J K (2011) Spontaneous formation of liquid crystals in ultralarge graphene oxide dispersions. Adv Funct Mater 21(15):2978–2988CrossRef
Zurück zum Zitat Akbari A, Sheath P, Martin S T, Shinde D B, Shaibani M, Banerjee P C, Tkacz R, Bhattacharyya D, Majumder M (2016) Large-area graphene-based nanofiltration membranes by shear alignment of discotic nematic liquid crystals of graphene oxide. Nat Commun, 7 Akbari A, Sheath P, Martin S T, Shinde D B, Shaibani M, Banerjee P C, Tkacz R, Bhattacharyya D, Majumder M (2016) Large-area graphene-based nanofiltration membranes by shear alignment of discotic nematic liquid crystals of graphene oxide. Nat Commun, 7
Zurück zum Zitat Bai H, Li C, Wang X, Shi G (2011) On the gelation of graphene oxide. J Phys Chem C 115 (13):5545–5551CrossRef Bai H, Li C, Wang X, Shi G (2011) On the gelation of graphene oxide. J Phys Chem C 115 (13):5545–5551CrossRef
Zurück zum Zitat Barnes HA, Hutton JF, Walters K (1989) An introduction to rheology, vol 3. Elsevier, Amsterdam Barnes HA, Hutton JF, Walters K (1989) An introduction to rheology, vol 3. Elsevier, Amsterdam
Zurück zum Zitat Barrat J L, Berthier L (2000) Fluctuation-dissipation relation in a sheared fluid. Phys Rev E 63(1):012,503CrossRef Barrat J L, Berthier L (2000) Fluctuation-dissipation relation in a sheared fluid. Phys Rev E 63(1):012,503CrossRef
Zurück zum Zitat Bekkour K, Leyama M, Benchabane A, Scrivener O (2005) Time-dependent rheological behavior of bentonite suspensions: an experimental study. J Rheol 49(6):1329–1345CrossRef Bekkour K, Leyama M, Benchabane A, Scrivener O (2005) Time-dependent rheological behavior of bentonite suspensions: an experimental study. J Rheol 49(6):1329–1345CrossRef
Zurück zum Zitat Benna M, Kbir-Ariguib N, Magnin A, Bergaya F (1999) Effect of ph on rheological properties of purified sodium bentonite suspensions. J Colloid Interface Sci 218(2):442–455CrossRef Benna M, Kbir-Ariguib N, Magnin A, Bergaya F (1999) Effect of ph on rheological properties of purified sodium bentonite suspensions. J Colloid Interface Sci 218(2):442–455CrossRef
Zurück zum Zitat Berthier L, Barrat J L, Kurchan J (2000) A two-time-scale, two-temperature scenario for nonlinear rheology. Phys Rev E 61(5):5464CrossRef Berthier L, Barrat J L, Kurchan J (2000) A two-time-scale, two-temperature scenario for nonlinear rheology. Phys Rev E 61(5):5464CrossRef
Zurück zum Zitat Chatterjee T, Krishnamoorti R (2013) Rheology of polymer carbon nanotubes composites. Soft Matter 9 (40):9515–9529CrossRef Chatterjee T, Krishnamoorti R (2013) Rheology of polymer carbon nanotubes composites. Soft Matter 9 (40):9515–9529CrossRef
Zurück zum Zitat Cocchini F, Nobile M, Acierno D (1992) Letter: about negative first normal stress differences in a thermotropic l.c. polymer. J Rheol 36:1307–1311CrossRef Cocchini F, Nobile M, Acierno D (1992) Letter: about negative first normal stress differences in a thermotropic l.c. polymer. J Rheol 36:1307–1311CrossRef
Zurück zum Zitat Cugliandolo L F, Kurchan J, Peliti L (1997) Energy flow, partial equilibration, and effective temperatures in systems with slow dynamics. Phys Rev E 55(4):3898CrossRef Cugliandolo L F, Kurchan J, Peliti L (1997) Energy flow, partial equilibration, and effective temperatures in systems with slow dynamics. Phys Rev E 55(4):3898CrossRef
Zurück zum Zitat Das S, Irin F, Ma L, Bhattacharia S K, Hedden R C, Green M J (2013) Rheology and morphology of pristine graphene/polyacrylamide gels. ACS Appl Mater Interfaces 5(17):8633–8640CrossRef Das S, Irin F, Ma L, Bhattacharia S K, Hedden R C, Green M J (2013) Rheology and morphology of pristine graphene/polyacrylamide gels. ACS Appl Mater Interfaces 5(17):8633–8640CrossRef
Zurück zum Zitat D’Avino G, Maffettone P (2015) Particle dynamics in viscoelastic liquids. J Non-Newton Fluid 215:80–104CrossRef D’Avino G, Maffettone P (2015) Particle dynamics in viscoelastic liquids. J Non-Newton Fluid 215:80–104CrossRef
Zurück zum Zitat Del Giudice F, Shen A Q (2017) Shear rheology of graphene oxide dispersions. Curr Opin Chem Eng 16C:23–30CrossRef Del Giudice F, Shen A Q (2017) Shear rheology of graphene oxide dispersions. Curr Opin Chem Eng 16C:23–30CrossRef
Zurück zum Zitat Dinkgreve M, Paredes J, Denn M M, Bonn D (2016) On different ways of measuring “the” yield stress. J Non-Newtonian Fluid Mech 238:233–241CrossRef Dinkgreve M, Paredes J, Denn M M, Bonn D (2016) On different ways of measuring “the” yield stress. J Non-Newtonian Fluid Mech 238:233–241CrossRef
Zurück zum Zitat Dreyer D R, Park S, Bielawski C W, Ruoff R S (2010) The chemistry of graphene oxide. Chem Soc Rev 39(1):228–240CrossRef Dreyer D R, Park S, Bielawski C W, Ruoff R S (2010) The chemistry of graphene oxide. Chem Soc Rev 39(1):228–240CrossRef
Zurück zum Zitat Eppenga R, Frenkel D (1984) Monte carlo study of the isotropic and nematic phases of infinitely thin hard platelets. Mol Phys 52(6):1303–1334CrossRef Eppenga R, Frenkel D (1984) Monte carlo study of the isotropic and nematic phases of infinitely thin hard platelets. Mol Phys 52(6):1303–1334CrossRef
Zurück zum Zitat Ewoldt RH, Johnston MT, Caretta LM (2015) Experimental challenges of shear rheology: how to avoid bad data. In: Complex fluids in biological systems. Springer, pp 207–241 Ewoldt RH, Johnston MT, Caretta LM (2015) Experimental challenges of shear rheology: how to avoid bad data. In: Complex fluids in biological systems. Springer, pp 207–241
Zurück zum Zitat Geim A K, Novoselov K S (2007) The rise of graphene. Nat Mater 6(3):183–191CrossRef Geim A K, Novoselov K S (2007) The rise of graphene. Nat Mater 6(3):183–191CrossRef
Zurück zum Zitat Green M J, Behabtu N, Pasquali M, Adams W W (2009) Nanotubes as polymers. Polymer 50 (21):4979–4997CrossRef Green M J, Behabtu N, Pasquali M, Adams W W (2009) Nanotubes as polymers. Polymer 50 (21):4979–4997CrossRef
Zurück zum Zitat Guimont A, Beyou E, Martin G, Sonntag P, Cassagnau P (2011) Viscoelasticity of graphite oxide-based suspensions in pdms. Macromolecules 44(10):3893–3900CrossRef Guimont A, Beyou E, Martin G, Sonntag P, Cassagnau P (2011) Viscoelasticity of graphite oxide-based suspensions in pdms. Macromolecules 44(10):3893–3900CrossRef
Zurück zum Zitat Hato M J, Zhang K, Ray S S, Choi H J (2011) Rheology of organoclay suspension. Colloid Polym Sci 289(10):1119CrossRef Hato M J, Zhang K, Ray S S, Choi H J (2011) Rheology of organoclay suspension. Colloid Polym Sci 289(10):1119CrossRef
Zurück zum Zitat Hobbie E K (2010) Shear rheology of carbon nanotube suspensions. Rheol Acta 49(4):323–334CrossRef Hobbie E K (2010) Shear rheology of carbon nanotube suspensions. Rheol Acta 49(4):323–334CrossRef
Zurück zum Zitat Jun SI, Lee HS (2012) Negative normal stress differences in graphene/polycarbonate composites. Appl Phys Lett 100(16):164,108CrossRef Jun SI, Lee HS (2012) Negative normal stress differences in graphene/polycarbonate composites. Appl Phys Lett 100(16):164,108CrossRef
Zurück zum Zitat Khandal R, Tadros T F (1988) Application of viscoelastic measurements to the investigation of the swelling of sodium montmorillonite suspensions. J Colloid Interface Sci 125(1):122–128CrossRef Khandal R, Tadros T F (1988) Application of viscoelastic measurements to the investigation of the swelling of sodium montmorillonite suspensions. J Colloid Interface Sci 125(1):122–128CrossRef
Zurück zum Zitat Kim H, Macosko C W (2009) Processing-property relationships of polycarbonate/graphene composites. Polymer 50(15):3797–3809CrossRef Kim H, Macosko C W (2009) Processing-property relationships of polycarbonate/graphene composites. Polymer 50(15):3797–3809CrossRef
Zurück zum Zitat Kim J E, Lee H S (2014) Oscillatory shear induced gelation of graphene–poly (vinyl alcohol) composite hydrogels and rheological premonitor of ultra-light aerogels. Polymer 55(1):287–294CrossRef Kim J E, Lee H S (2014) Oscillatory shear induced gelation of graphene–poly (vinyl alcohol) composite hydrogels and rheological premonitor of ultra-light aerogels. Polymer 55(1):287–294CrossRef
Zurück zum Zitat Kimura H, Sakurai M, Sugiyama T, Tsuchida A, Okubo T, Masuko T (2011) Dispersion state and rheology of hectorite particles in water over a broad range of salt and particle concentrations. Rheol Acta 50 (2):159–168CrossRef Kimura H, Sakurai M, Sugiyama T, Tsuchida A, Okubo T, Masuko T (2011) Dispersion state and rheology of hectorite particles in water over a broad range of salt and particle concentrations. Rheol Acta 50 (2):159–168CrossRef
Zurück zum Zitat King H Jr, Milner S T, Lin M Y, Singh J P, Mason T (2007) Structure and rheology of organoclay suspensions. Phys Rev E 75(2):021,403CrossRef King H Jr, Milner S T, Lin M Y, Singh J P, Mason T (2007) Structure and rheology of organoclay suspensions. Phys Rev E 75(2):021,403CrossRef
Zurück zum Zitat Kiss G, Porter R S (1978) Rheology of concentrated solutions of poly (γ-benzyl-glutamate). In: Journal of polymer science: polymer symposia, Wiley Online Library, vol 65, pp 193–211 Kiss G, Porter R S (1978) Rheology of concentrated solutions of poly (γ-benzyl-glutamate). In: Journal of polymer science: polymer symposia, Wiley Online Library, vol 65, pp 193–211
Zurück zum Zitat Krieger I M, Dougherty T J (1959) A mechanism for non-newtonian flow in suspensions of rigid spheres. Trans Soc Rheol (1957–1977) 3(1):137–152CrossRef Krieger I M, Dougherty T J (1959) A mechanism for non-newtonian flow in suspensions of rigid spheres. Trans Soc Rheol (1957–1977) 3(1):137–152CrossRef
Zurück zum Zitat Kugge C, Vanderhoek N, Bousfield D (2011) Oscillatory shear response of moisture barrier coatings containing clay of different shape factor. J Colloid Interface Sci 358(1):25–31CrossRef Kugge C, Vanderhoek N, Bousfield D (2011) Oscillatory shear response of moisture barrier coatings containing clay of different shape factor. J Colloid Interface Sci 358(1):25–31CrossRef
Zurück zum Zitat Kumar P, Maiti U N, Lee K E, Kim S O (2014) Rheological properties of graphene oxide liquid crystal. Carbon 80:453–461CrossRef Kumar P, Maiti U N, Lee K E, Kim S O (2014) Rheological properties of graphene oxide liquid crystal. Carbon 80:453–461CrossRef
Zurück zum Zitat Labanda J, Sabaté J, Llorens J (2007) Rheology changes of laponite aqueous dispersions due to the addition of sodium polyacrylates of different molecular weights. Colloids Surf A Physicochem Eng Asp 301(1):8–15CrossRef Labanda J, Sabaté J, Llorens J (2007) Rheology changes of laponite aqueous dispersions due to the addition of sodium polyacrylates of different molecular weights. Colloids Surf A Physicochem Eng Asp 301(1):8–15CrossRef
Zurück zum Zitat Larson R (1990) Arrested tumbling in shearing flows of liquid-crystal polymers. Macromolecules 23(17):3983–3992CrossRef Larson R (1990) Arrested tumbling in shearing flows of liquid-crystal polymers. Macromolecules 23(17):3983–3992CrossRef
Zurück zum Zitat Larson RG (1999) The structure and rheology of complex fluids, vol 150. Oxford University Press, New York Larson RG (1999) The structure and rheology of complex fluids, vol 150. Oxford University Press, New York
Zurück zum Zitat Li D, Müller M B, Gilje S, Kaner R B, Wallace G G (2008) Processable aqueous dispersions of graphene nanosheets. Nat Nanotechnol 3(2):101–105CrossRef Li D, Müller M B, Gilje S, Kaner R B, Wallace G G (2008) Processable aqueous dispersions of graphene nanosheets. Nat Nanotechnol 3(2):101–105CrossRef
Zurück zum Zitat Lin-Gibson S, Pathak J, Grulke E, Wang H, Hobbie E (2004) Elastic flow instability in nanotube suspensions. Phys Rev Lett 92(4):048,302CrossRef Lin-Gibson S, Pathak J, Grulke E, Wang H, Hobbie E (2004) Elastic flow instability in nanotube suspensions. Phys Rev Lett 92(4):048,302CrossRef
Zurück zum Zitat Liu J, Chen G, Jiang M (2011) Supramolecular hybrid hydrogels from noncovalently functionalized graphene with block copolymers. Macromolecules 44(19):7682–7691CrossRef Liu J, Chen G, Jiang M (2011) Supramolecular hybrid hydrogels from noncovalently functionalized graphene with block copolymers. Macromolecules 44(19):7682–7691CrossRef
Zurück zum Zitat Liu Y, Chen C, Liu L, Zhu G, Kong Q, Hao R, Tan W (2015) Rheological behavior of high concentrated dispersions of graphite oxide. Soft Mater 13(3):167–175CrossRef Liu Y, Chen C, Liu L, Zhu G, Kong Q, Hao R, Tan W (2015) Rheological behavior of high concentrated dispersions of graphite oxide. Soft Mater 13(3):167–175CrossRef
Zurück zum Zitat Lu C, Mai Y W (2005) Influence of aspect ratio on barrier properties of polymer-clay nanocomposites. Phys Rev Lett 95(8):088, 303CrossRef Lu C, Mai Y W (2005) Influence of aspect ratio on barrier properties of polymer-clay nanocomposites. Phys Rev Lett 95(8):088, 303CrossRef
Zurück zum Zitat Macosko C (1994) Rheology: Principles, measurements, and applications. 1994. Wiley-VCH, Weinheim Macosko C (1994) Rheology: Principles, measurements, and applications. 1994. Wiley-VCH, Weinheim
Zurück zum Zitat Marrucci G, Maffettone P (1989) A description of the liquid-crystalline phase of rodlike polymers at high shear rates. Macromolecules 22(10):4076–4082CrossRef Marrucci G, Maffettone P (1989) A description of the liquid-crystalline phase of rodlike polymers at high shear rates. Macromolecules 22(10):4076–4082CrossRef
Zurück zum Zitat Marrucci G, Maffettone P (1990a) Nematic phase of rodlike polymers. I. Prediction of transient behavior at high shear rates. J Rheol 34(8):1217–1230 Marrucci G, Maffettone P (1990a) Nematic phase of rodlike polymers. I. Prediction of transient behavior at high shear rates. J Rheol 34(8):1217–1230
Zurück zum Zitat Marrucci G, Maffettone P (1990b) Nematic phase of rodlike polymers. II. Polydomain predictions in the tumbling regime. J Rheol 34(8):1231–1244 Marrucci G, Maffettone P (1990b) Nematic phase of rodlike polymers. II. Polydomain predictions in the tumbling regime. J Rheol 34(8):1231–1244
Zurück zum Zitat Michot L J, Bihannic I, Maddi S, Funari S S, Baravian C, Levitz P, Davidson P (2006) Liquid–crystalline aqueous clay suspensions. Proc Natl Acad Sci 103(44):16,101–16,104CrossRef Michot L J, Bihannic I, Maddi S, Funari S S, Baravian C, Levitz P, Davidson P (2006) Liquid–crystalline aqueous clay suspensions. Proc Natl Acad Sci 103(44):16,101–16,104CrossRef
Zurück zum Zitat Moan M, Aubry T, Bossard F (2003) Nonlinear behavior of very concentrated suspensions of plate-like kaolin particles in shear flow. J Rheol 47(6):1493–1504CrossRef Moan M, Aubry T, Bossard F (2003) Nonlinear behavior of very concentrated suspensions of plate-like kaolin particles in shear flow. J Rheol 47(6):1493–1504CrossRef
Zurück zum Zitat Montesi A, Peña A A, Pasquali M (2004) Vorticity alignment and negative normal stresses in sheared attractive emulsions. Phys Rev Lett 92(5):058,303CrossRef Montesi A, Peña A A, Pasquali M (2004) Vorticity alignment and negative normal stresses in sheared attractive emulsions. Phys Rev Lett 92(5):058,303CrossRef
Zurück zum Zitat Naficy S, Jalili R, Aboutalebi S H, Gorkin I I I R A, Konstantinov K, Innis P C, Spinks G M, Poulin P, Wallace G G (2014) Graphene oxide dispersions: tuning rheology to enable fabrication. Mater Horiz 1(3):326–331CrossRef Naficy S, Jalili R, Aboutalebi S H, Gorkin I I I R A, Konstantinov K, Innis P C, Spinks G M, Poulin P, Wallace G G (2014) Graphene oxide dispersions: tuning rheology to enable fabrication. Mater Horiz 1(3):326–331CrossRef
Zurück zum Zitat Niu R, Gong J, Xu D, Tang T, Sun Z Y (2014) Influence of molecular weight of polymer matrix on the structure and rheological properties of graphene oxide/polydimethylsiloxane composites. Polymer 55(21):5445–5453CrossRef Niu R, Gong J, Xu D, Tang T, Sun Z Y (2014) Influence of molecular weight of polymer matrix on the structure and rheological properties of graphene oxide/polydimethylsiloxane composites. Polymer 55(21):5445–5453CrossRef
Zurück zum Zitat Niu X, Gong J, Xu D, Tanga T, Sun Z Y (2015) Impact of particle surface chemistry on the structure and rheological properties of graphene-based particle/polydimethylsiloxane composites. RSC Adv 5:34,885–34,893CrossRef Niu X, Gong J, Xu D, Tanga T, Sun Z Y (2015) Impact of particle surface chemistry on the structure and rheological properties of graphene-based particle/polydimethylsiloxane composites. RSC Adv 5:34,885–34,893CrossRef
Zurück zum Zitat Onsager L (1949) The effects of shape on the interaction of colloidal particles. Ann N Y Acad Sci 51(4):627–659CrossRef Onsager L (1949) The effects of shape on the interaction of colloidal particles. Ann N Y Acad Sci 51(4):627–659CrossRef
Zurück zum Zitat Osuji C O, Weitz D A (2008) Highly anisotropic vorticity aligned structures in a shear thickening attractive colloidal system. Soft Matter 4(7):1388–1392CrossRef Osuji C O, Weitz D A (2008) Highly anisotropic vorticity aligned structures in a shear thickening attractive colloidal system. Soft Matter 4(7):1388–1392CrossRef
Zurück zum Zitat Park S, Ruoff R S (2009) Chemical methods for the production of graphenes. Nat Nanotechnol 4(4):217–224CrossRef Park S, Ruoff R S (2009) Chemical methods for the production of graphenes. Nat Nanotechnol 4(4):217–224CrossRef
Zurück zum Zitat Perge C, Taberlet N, Gibaud T, Manneville S (2014) Time dependence in large amplitude oscillatory shear: a rheo-ultrasonic study of fatigue dynamics in a colloidal gel. J Rheol 58(5):1331– 1357CrossRef Perge C, Taberlet N, Gibaud T, Manneville S (2014) Time dependence in large amplitude oscillatory shear: a rheo-ultrasonic study of fatigue dynamics in a colloidal gel. J Rheol 58(5):1331– 1357CrossRef
Zurück zum Zitat Pignon F, Magnin A, Piau J M (1997a) Butterfly light scattering pattern and rheology of a sheared thixotropic clay gel. Phys Rev Lett 79(23):4689 Pignon F, Magnin A, Piau J M (1997a) Butterfly light scattering pattern and rheology of a sheared thixotropic clay gel. Phys Rev Lett 79(23):4689
Zurück zum Zitat Pignon F, Magnin A, Piau J M, Cabane B, Lindner P, Diat O (1997b) Yield stress thixotropic clay suspension: investigations of structure by light, neutron, and x-ray scattering. Phys Rev E 56(3): 3281 Pignon F, Magnin A, Piau J M, Cabane B, Lindner P, Diat O (1997b) Yield stress thixotropic clay suspension: investigations of structure by light, neutron, and x-ray scattering. Phys Rev E 56(3): 3281
Zurück zum Zitat Potts J R, Dreyer D R, Bielawski C W, Ruoff R S (2011) Graphene-based polymer nanocomposites. Polymer 52(1):5–25CrossRef Potts J R, Dreyer D R, Bielawski C W, Ruoff R S (2011) Graphene-based polymer nanocomposites. Polymer 52(1):5–25CrossRef
Zurück zum Zitat Renou F, Stellbrink J, Petekidis G (2010) Yielding processes in a colloidal glass of soft star-like micelles under large amplitude oscillatory shear (laos). J Rheol 54(6):1219–1242CrossRef Renou F, Stellbrink J, Petekidis G (2010) Yielding processes in a colloidal glass of soft star-like micelles under large amplitude oscillatory shear (laos). J Rheol 54(6):1219–1242CrossRef
Zurück zum Zitat Sadasivuni K K, Ponnamma D, Kumar B, Strankowski M, Cardinaels R, Moldenaers P, Thomas S, Grohens Y (2014) Dielectric properties of modified graphene oxide filled polyurethane nanocomposites and its correlation with rheology. Compos Sci Technol 104:18–25CrossRef Sadasivuni K K, Ponnamma D, Kumar B, Strankowski M, Cardinaels R, Moldenaers P, Thomas S, Grohens Y (2014) Dielectric properties of modified graphene oxide filled polyurethane nanocomposites and its correlation with rheology. Compos Sci Technol 104:18–25CrossRef
Zurück zum Zitat Saunders J M, Goodwin J W, Richardson R M, Vincent B (1999) A small-angle x-ray scattering study of the structure of aqueous laponite dispersions. J Phys Chem B 103(43):9211–9218CrossRef Saunders J M, Goodwin J W, Richardson R M, Vincent B (1999) A small-angle x-ray scattering study of the structure of aqueous laponite dispersions. J Phys Chem B 103(43):9211–9218CrossRef
Zurück zum Zitat Schiller P, Bombrowski M, Wahab M, Mögel H J (2016) Models for normal stress and orientational order in sheared kaolin suspensions. J Rheol 60(2):311–325CrossRef Schiller P, Bombrowski M, Wahab M, Mögel H J (2016) Models for normal stress and orientational order in sheared kaolin suspensions. J Rheol 60(2):311–325CrossRef
Zurück zum Zitat Schweizer T, Bardow A (2006) The role of instrument compliance in normal force measurements of polymer melts. Rheol Acta 45(4):393–402CrossRef Schweizer T, Bardow A (2006) The role of instrument compliance in normal force measurements of polymer melts. Rheol Acta 45(4):393–402CrossRef
Zurück zum Zitat Shaffer M, Windle A (1999) Analogies between polymer solutions and carbon nanotube dispersions. Macromolecules 32(20):6864– 6866CrossRef Shaffer M, Windle A (1999) Analogies between polymer solutions and carbon nanotube dispersions. Macromolecules 32(20):6864– 6866CrossRef
Zurück zum Zitat Shih W Y, Shih W H, Aksay I A (1999) Elastic and yield behavior of strongly flocculated colloids. J Am Ceram Soc 82(3):616–624CrossRef Shih W Y, Shih W H, Aksay I A (1999) Elastic and yield behavior of strongly flocculated colloids. J Am Ceram Soc 82(3):616–624CrossRef
Zurück zum Zitat Singh V K, Cura M E, Liu X, Johansson L S, Ge Y, Hannula S P (2014) Tuning the mechanical and adsorption properties of silica with graphene oxide. ChemPlusChem 79(10):1512–1522CrossRef Singh V K, Cura M E, Liu X, Johansson L S, Ge Y, Hannula S P (2014) Tuning the mechanical and adsorption properties of silica with graphene oxide. ChemPlusChem 79(10):1512–1522CrossRef
Zurück zum Zitat Sohm R, Tadros T F (1989) Viscoelastic properties of sodium montmorillonite (gelwhite h) suspensions. J Colloid Interface Sci 132(1):62–71CrossRef Sohm R, Tadros T F (1989) Viscoelastic properties of sodium montmorillonite (gelwhite h) suspensions. J Colloid Interface Sci 132(1):62–71CrossRef
Zurück zum Zitat Sun X, Luo D, Liu J, Evans D G (2010) Monodisperse chemically modified graphene obtained by density gradient ultracentrifugal rate separation. Acs Nano 4(6):3381–3389CrossRef Sun X, Luo D, Liu J, Evans D G (2010) Monodisperse chemically modified graphene obtained by density gradient ultracentrifugal rate separation. Acs Nano 4(6):3381–3389CrossRef
Zurück zum Zitat Tesfai W, Singh P, Shatilla Y, Iqbal M Z, Abdala A A (2013) Rheology and microstructure of dilute graphene oxide suspension. J Nanopart Res 15(10):1–7CrossRef Tesfai W, Singh P, Shatilla Y, Iqbal M Z, Abdala A A (2013) Rheology and microstructure of dilute graphene oxide suspension. J Nanopart Res 15(10):1–7CrossRef
Zurück zum Zitat Tripathi S N, Malik R S, Choudhary V (2015) Melt rheology and thermomechanical behavior of poly (methyl methacrylate)/reduced graphene oxide nanocomposites. Polym Advan Technol 26(12):1558–1566CrossRef Tripathi S N, Malik R S, Choudhary V (2015) Melt rheology and thermomechanical behavior of poly (methyl methacrylate)/reduced graphene oxide nanocomposites. Polym Advan Technol 26(12):1558–1566CrossRef
Zurück zum Zitat Vallés C, Young R J, Lomax D J, Kinloch I A (2014) The rheological behaviour of concentrated dispersions of graphene oxide. J Mater Sci 49(18):6311–6320CrossRef Vallés C, Young R J, Lomax D J, Kinloch I A (2014) The rheological behaviour of concentrated dispersions of graphene oxide. J Mater Sci 49(18):6311–6320CrossRef
Zurück zum Zitat Vasu K, Krishnaswamy R, Sampath S, Sood A (2013) Yield stress, thixotropy and shear banding in a dilute aqueous suspension of few layer graphene oxide platelets. Soft Matter 9(25):5874–5882CrossRef Vasu K, Krishnaswamy R, Sampath S, Sood A (2013) Yield stress, thixotropy and shear banding in a dilute aqueous suspension of few layer graphene oxide platelets. Soft Matter 9(25):5874–5882CrossRef
Zurück zum Zitat Walters K (1975) Rheometry. Chapman & Hall, London Walters K (1975) Rheometry. Chapman & Hall, London
Zurück zum Zitat Xu Z, Gao C (2011) Aqueous liquid crystals of graphene oxide. ACS Nano 5(4):2908–2915CrossRef Xu Z, Gao C (2011) Aqueous liquid crystals of graphene oxide. ACS Nano 5(4):2908–2915CrossRef
Zurück zum Zitat Yang X, Guo C, Ji L, Li Y, Tu Y (2013) Liquid crystalline and shear-induced properties of an aqueous solution of graphene oxide sheets. Langmuir 29(25):8103–8107CrossRef Yang X, Guo C, Ji L, Li Y, Tu Y (2013) Liquid crystalline and shear-induced properties of an aqueous solution of graphene oxide sheets. Langmuir 29(25):8103–8107CrossRef
Zurück zum Zitat Yao L, Lu Y, Wang Y, Hu L (2014) Effect of graphene oxide on the solution rheology and the film structure and properties of cellulose carbamate. Carbon 69:552–562CrossRef Yao L, Lu Y, Wang Y, Hu L (2014) Effect of graphene oxide on the solution rheology and the film structure and properties of cellulose carbamate. Carbon 69:552–562CrossRef
Metadaten
Titel
Filling the gap between transient and steady shear rheology of aqueous graphene oxide dispersions
verfasst von
Francesco Del Giudice
Benjamin V. Cunning
Rodney S. Ruoff
Amy Q. Shen
Publikationsdatum
20.02.2018
Verlag
Springer Berlin Heidelberg
Erschienen in
Rheologica Acta / Ausgabe 4/2018
Print ISSN: 0035-4511
Elektronische ISSN: 1435-1528
DOI
https://doi.org/10.1007/s00397-018-1077-9

Weitere Artikel der Ausgabe 4/2018

Rheologica Acta 4/2018 Zur Ausgabe

    Marktübersichten

    Die im Laufe eines Jahres in der „adhäsion“ veröffentlichten Marktübersichten helfen Anwendern verschiedenster Branchen, sich einen gezielten Überblick über Lieferantenangebote zu verschaffen.