3‐Octanoylthio ‐1‐propyltriethoxysilane functionalized silica/rubber composites for application in tire: Structure, performance and synergism

[1]  M. Maciejewska,et al.  Influence of the Silica Specific Surface Area and Ionic Liquids on the Curing Characteristics and Performance of Styrene–Butadiene Rubber Composites , 2021, Materials.

[2]  O. Kotecký,et al.  Influence of Silica Specific Surface Area on the Viscoelastic and Fatigue Behaviors of Silica-Filled SBR Composites , 2021, Polymers.

[3]  A. Bhowmick,et al.  Improved tire tread compounds using functionalized styrene butadiene rubber‐silica filler/hybrid filler systems , 2021 .

[4]  W. Dierkes,et al.  On the various roles of 1,3-DIPHENYL Guanidine in silica/silane reinforced sbr/br blends , 2021 .

[5]  S. Chattopadhyay,et al.  Improved dispersion and physico‐mechanical properties of rubber/silica composites through new silane grafting , 2020 .

[6]  H. Sodano,et al.  Aramid Nanofiber Reinforced Rubber Compounds for the Application of Tire Tread with High Abrasion Resistance and Fuel Saving Efficiency , 2020 .

[7]  T. Yasin,et al.  Surface modification of mesoporous silica by radiation induced graft polymerization of styrene and subsequent sulfonation for ion‐exchange applications , 2020, Journal of Applied Polymer Science.

[8]  R. N. Brandalise,et al.  Influence on mechanical and rheometric properties through different methods of chemical modification of silica applied to natural rubber compounds , 2020 .

[9]  S. Chattopadhyay,et al.  Reactive grafting of 3-octanoylthio-1-propyltriethoxysilane in styrene butadiene rubber: Characterization and its effect on silica reinforced tire composites , 2019, Polymer.

[10]  A. Bhowmick,et al.  Influence of highly dispersible silica filler on the physical properties, tearing energy, and abrasion resistance of tire tread compound , 2019, Journal of Applied Polymer Science.

[11]  W. Dierkes,et al.  THE ORIGIN OF MARCHING MODULUS OF SILICA-FILLED TIRE TREAD COMPOUNDS , 2018, Rubber Chemistry and Technology.

[12]  Ki‐Hyun Kim,et al.  Effect of the functional group of silanes on the modification of silica surface and the physical properties of solution styrene-butadiene rubber/silica composites , 2018, Composite Interfaces.

[13]  A. Bhowmick,et al.  EFFECT OF SILICA LOADING AND COUPLING AGENT ON WEAR AND FATIGUE PROPERTIES OF A TREAD COMPOUND , 2018, Rubber Chemistry and Technology.

[14]  N. Stevulova,et al.  Characterization of Cellulosic Fibers by FTIR Spectroscopy for Their Further Implementation to Building Materials , 2018 .

[15]  Liqun Zhang,et al.  Significantly improved rubber-silica interface via subtly controlling surface chemistry of silica , 2018 .

[16]  V. Tertykh,et al.  A New Route for Preparation of Hydrophobic Silica Nanoparticles Using a Mixture of Poly(dimethylsiloxane) and Diethyl Carbonate , 2018, Polymers.

[17]  Efrat Ruse,et al.  Performance of nano-carbon loaded polymer composites: Dimensionality matters , 2018 .

[18]  W. Dierkes,et al.  REINFORCEMENT OF NATURAL RUBBER BY SILICA/SILANE IN DEPENDENCE OF DIFFERENT AMINE TYPES , 2017 .

[19]  H. Paik,et al.  The effect of accelerator contents on the vulcanizate structures of SSBR/silica vulcanizates , 2017 .

[20]  J. Tao,et al.  The combination of montmorillonite and silica in styrene–butadiene rubber/polybutadiene rubber tread compounds , 2017 .

[21]  Seong-Geun Oh,et al.  Surface modification of silica nanoparticles using phenyl trimethoxy silane and their dispersion stability in N-methyl-2-pyrrolidone , 2016 .

[22]  G. Nando,et al.  Cardanol grafted natural rubber: A green substitute to natural rubber for enhancing silica filler dispersion , 2016 .

[23]  P. Butler,et al.  Graphene Nanocomposites with High Molecular Weight Poly(ε-caprolactone) Grafts: Controlled Synthesis and Accelerated Crystallization. , 2016, ACS macro letters.

[24]  Bharat P. Kapgate,et al.  Rubber composites based on silane-treated stöber silica and nitrile rubber , 2015 .

[25]  W. Dierkes,et al.  Mechanistic aspects of silane coupling agents with different functionalities on reinforcement of silica-filled natural rubber compounds , 2015 .

[26]  M. Cakmak,et al.  Details of Molecular Organization during Strain-Induced Crystallization in Natural Rubber/Clay Systems As Revealed by Real-Time Mechano-Optical Behavior , 2015 .

[27]  Hongmei Zhang,et al.  Nonlinear viscoelasticity and stress‐softening behavior of chloroprene rubber reinforced by multiwalled carbon nanotubes , 2014 .

[28]  A. Bhowmick,et al.  Conducting instant adhesives by grafting of silane polymer onto expanded graphite. , 2014, ACS applied materials & interfaces.

[29]  S. Wen,et al.  Surface modification of silica by two-step method and properties of solution styrene butadiene rubber (SSBR) nanocomposites filled with modified silica , 2013 .

[30]  M. Kotal,et al.  Polyaniline-carbon nanofiber composite by a chemical grafting approach and its supercapacitor application. , 2013, ACS applied materials & interfaces.

[31]  G. Heinrich,et al.  Understanding the reinforcing behavior of expanded clay particles in natural rubber compounds , 2013 .

[32]  S. Ostad Movahed,et al.  Using a sulfur-bearing silane to improve rubber formulations for potential use in industrial rubber articles , 2013 .

[33]  Zichen Wang,et al.  A new route to synthesis of surface hydrophobic silica with long-chain alcohols in water phase , 2010 .

[34]  A. Bandyopadhyay,et al.  Elegant Way of Strengthening Polymer−Polymer Interface Using Nanoclay , 2010 .

[35]  L. Fedrizzi,et al.  Integrated electrochemical approach for the investigation of silane pre-treatments for painting copper , 2008 .

[36]  H. Zou,et al.  Polymer/silica nanocomposites: preparation, characterization, properties, and applications. , 2008, Chemical reviews.

[37]  Liliane Bokobza,et al.  MULTIWALL CARBON NANOTUBE ELASTOMERIC COMPOSITES: A REVIEW , 2007 .

[38]  A. Marzocca Evaluation of the polymer–solvent interaction parameter χ for the system cured styrene butadiene rubber and toluene , 2007 .

[39]  J. Ramier,et al.  Payne effect in silica‐filled styrene–butadiene rubber: Influence of surface treatment , 2007 .

[40]  J. Koo,et al.  Quantifying the dispersion of mixture microstructures , 2007, Journal of microscopy.

[41]  M. Sarkar,et al.  Polymer–filler interactions in sol–gel derived polymer/silica hybrid nanocomposites , 2005 .

[42]  M. Klüppel,et al.  Evaluation of sliding friction and contact mechanics of elastomers based on dynamic-mechanical analysis. , 2005, The Journal of chemical physics.

[43]  Xiao-dong Pan Impact of reinforcing filler on the dynamic moduli of elastomer compounds under shear deformation in relation to wet sliding friction , 2005 .

[44]  A. Hartwig,et al.  Cross-linking of cationically polymerised epoxides by nanoparticles , 2005 .

[45]  Yong Zhang,et al.  Effect of silane coupling agent on the polymer‐filler interaction and mechanical properties of silica‐filled NR , 2005 .

[46]  K. Friedrich,et al.  Silica nanoparticles filled polypropylene: effects of particle surface treatment, matrix ductility and particle species on mechanical performance of the composites , 2005 .

[47]  T. Yamauchi,et al.  Scale-up synthesis of vinyl polymer-grafted nano-sized silica by radical polymerization of vinyl monomers initiated by surface initiating groups in the solvent-free dry-system , 2005 .

[48]  M. Castellano,et al.  Surface modification of silica: 1. Thermodynamic aspects and effect on elastomer reinforcement , 2005 .

[49]  S. Ray,et al.  Novel electron beam-modified surface-coated silica fillers: Physical and chemical characteristics , 2002 .

[50]  A. Wolf,et al.  A Study of Alkyl Chain Conformational Changes in Self-Assembled n-Octadecyltrichlorosilane Monolayers on Fused Silica Surfaces , 2001 .

[51]  H. Yang,et al.  High Frequency Viscoelasticity of Carbon Black Filled Compounds , 1996 .

[52]  Tao Zhang,et al.  Study on dispersion morphology of silica in rubber , 1994 .

[53]  G. R. Cotten Mixing of Carbon Black with Rubber I. Measurement of Dispersion Rate by Changes in Mixing Torque , 1984 .

[54]  Avrom I. Medalia,et al.  Effect of Carbon Black on Dynamic Properties of Rubber Vulcanizates , 1978 .