Crystallization Kinetics and Nanoparticle Ordering in Semicrystalline Polymer Nanocomposites
暂无分享,去创建一个
A. Müller | Dujing Wang | Yunlan Su | Xia Wen | Sanat K. Kumar | R. A. Pérez-Camargo | Abdullah S. Altorbaq | Alejandro A. Krauskopf | Yunlan Su
[1] A. Müller,et al. Quantifying Nanoparticle Ordering Induced by Polymer Crystallization. , 2021, ACS nano.
[2] L. Schadler,et al. Using Nanofiller Assemblies to Control the Crystallization Kinetics of High-Density Polyethylene , 2021 .
[3] Dimitrios J. Giliopoulos,et al. Comparative study of crystallization, semicrystalline morphology, and molecular mobility in nanocomposites based on polylactide and various inclusions at low filler loadings , 2021 .
[4] M. Marcolongo,et al. MC3T3 E1 cell response to mineralized nanofiber shish kebab structures. , 2021, Journal of biomedical materials research. Part B, Applied biomaterials.
[5] A. Müller,et al. Direct Relationship between Dispersion and Crystallization Behavior in Poly(ethylene oxide)/Poly(ethylene glycol)-g-Silica Nanocomposites , 2021 .
[6] Sumesh P. Thampi,et al. Modeling polymer crystallisation induced by a moving heat sink. , 2021, Soft matter.
[7] A. Müller,et al. Polymer Spherulitic Growth Kinetics Mediated by Nanoparticle Assemblies , 2021 .
[8] Sanat K. Kumar,et al. Quantifying Nanoparticle Assembly States in a Polymer Matrix through Deep Learning , 2021, Macromolecules.
[9] Sebastian T. Russell,et al. Compatibilizing Immiscible Polymer Blends with Sparsely Grafted Nanoparticles , 2020 .
[10] A. Müller,et al. Polymer Crystallization under Confinement by Well-Dispersed Nanoparticles , 2020 .
[11] Sanat K. Kumar,et al. Structure of Polymer-Grafted Nanoparticle Melts. , 2020, ACS nano.
[12] Jingjing Tang,et al. Supernucleation, crystalline structure and thermal stability of bacterially synthesized poly(3-hydroxybutyrate) polyester tailored by thymine as a biocompatible nucleating agent. , 2020, International journal of biological macromolecules.
[13] M. Mozetič,et al. Nano-mesh superstructure in single-walled carbon nanotube/polyethylene nanocomposites, and its impact on rheological, thermal and mechanical properties , 2020 .
[14] A. Müller,et al. Competition between nucleation and confinement in the crystallization of poly(ethylene glycol)/ large aspect ratio hectorite nanocomposites , 2020, Polymer.
[15] A. Müller,et al. Mechanisms of Directional Polymer Crystallization , 2020, ACS macro letters.
[16] M. Marcolongo,et al. Size-dependent soft epitaxial crystallization in the formation of blend nanofiber shish kebabs , 2020 .
[17] Jing Jin,et al. Uniaxial tensile deformation of microinjection molded PCL/SWCNTs nanocomposites: Effect of interfacial “soft epitaxy” on the structural evolution as studied by synchrotron SAXS and WAXD techniques , 2020, Polymer.
[18] Karen I. Winey,et al. Dynamics of polymer segments, polymer chains, and nanoparticles in polymer nanocomposite melts: A review , 2020, Progress in Polymer Science.
[19] S. Siengchin,et al. Polymer grafted carbon nanotubes—Synthesis, properties, and applications: A review , 2020 .
[20] Shouke Yan,et al. Synergistic effect of thermoplastic phenolic resin and multiwalled carbon nanotubes on the crystallization of polyoxymethylene , 2020 .
[21] A. Müller,et al. The origin of memory effects in the crystallization of polyamides: Role of hydrogen bonding , 2020 .
[22] Jingjing Tang,et al. Multiple amides derivative-nucleated poly(1,4-butylene adipate) polyester: Tailored temperature-dependent polymorphism, crystal morphology and phase transition , 2020 .
[23] A. Deshmukh,et al. The influence of micro-graphite addition on nucleation efficiency and isothermal crystallization kinetics of thermoplastic polyurethane (TPU) , 2020 .
[24] M. Tiwari,et al. Quantification of carbon nanotube dispersion and its correlation with mechanical and thermal properties of epoxy nanocomposites , 2020 .
[25] Yongqiang Ming,et al. The influences of grafting density and polymer–nanoparticle interaction on crystallisation of polymer composites , 2020, Molecular Simulation.
[26] A. Müller,et al. Effects of Hairy Nanoparticles on Polymer Crystallization Kinetics , 2019, Macromolecules.
[27] A. Jabbarzadeh,et al. Unravelling the effects of size, volume fraction and shape of nanoparticle additives on crystallization of nanocomposite polymers , 2019, Nanoscale advances.
[28] A. Müller,et al. Effects and limits of highly efficient nucleating agents in thermoplastic polyurethane , 2019, Polymer.
[29] A. Jabbarzadeh. The Origins of Enhanced and Retarded Crystallization in Nanocomposite Polymers , 2019, Nanomaterials.
[30] V. Deshpande,et al. Isothermal crystallization kinetics of PET/alumina nanocomposites using distinct macrokinetic models , 2019, Journal of Thermal Analysis and Calorimetry.
[31] L. Schadler,et al. Nanoparticle Organization by Growing Polyethylene Crystal Fronts. , 2019, ACS macro letters.
[32] Kailong Jin,et al. Isolating the effect of polymer-grafted nanoparticle interactions with matrix polymer from dispersion on composite property enhancement: The example of polypropylene/halloysite nanocomposites , 2019, Polymer.
[33] M. Nofar,et al. Polylactide cellulose-based nanocomposites. , 2019, International journal of biological macromolecules.
[34] F. Shehzad,et al. Influence of microwave irradiation on thermal properties of PVA and PVA/graphene nanocomposites , 2019, Journal of Thermal Analysis and Calorimetry.
[35] T. Peijs,et al. The Influence of Graft Length and Density on Dispersion, Crystallisation and Rheology of Poly(ε-caprolactone)/Silica Nanocomposites , 2019, Molecules.
[36] Shouke Yan,et al. The influence of illite on the crystallization and properties of isotactic polypropylene , 2019, POLYMER CRYSTALLIZATION.
[37] Dujing Wang,et al. Manipulating crystallization behavior of poly(ethylene oxide) by functionalized nanoparticle inclusion , 2019, Polymer.
[38] L. Schadler,et al. Polyethylene Grafted Silica Nanoparticles Prepared via Surface-Initiated ROMP. , 2019, ACS macro letters.
[39] A. Müller,et al. Correlation between Grafting Density and Confined Crystallization Behavior of Poly(ethylene glycol) Grafted to Silica , 2019, Macromolecules.
[40] S. H. Anastasiadis,et al. Tuning polymer crystallinity via the appropriate selection of inorganic nanoadditives , 2018, Polymer.
[41] P. Dubois,et al. The influence of grafting on flow-induced crystallization and rheological properties of poly(ε-caprolactone)/cellulose nanocrystal nanocomposites , 2018, Nanocomposites.
[42] M. Marcolongo,et al. A Review of Nanofiber Shish Kebabs and Their Potential in Creating Effective Biomimetic Bone Scaffolds , 2018, Regenerative Engineering and Translational Medicine.
[43] Á. Alegría,et al. Differences between Isotropic and Self-Nucleated PCL Melts Detected by Dielectric Experiments , 2018 .
[44] A. S. Luyt,et al. Morphology, Nucleation, and Isothermal Crystallization Kinetics of Poly(Butylene Succinate) Mixed with a Polycarbonate/MWCNT Masterbatch , 2018, Polymers.
[45] Zhaohui Yang,et al. Crystallization Behavior of Poly(ethylene oxide) in Vertically Aligned Carbon Nanotube Array. , 2018, Langmuir : the ACS journal of surfaces and colloids.
[46] Wei Yang,et al. Enhancing crystallization rate and melt strength of PLLA with four‐arm PLLA grafted silica: The effect of molecular weight of the grafting PLLA chains , 2018 .
[47] P. Ma,et al. The crystallization behavior of poly(lactic acid) with different types of nucleating agents. , 2018, International journal of biological macromolecules.
[48] A. S. Luyt,et al. Morphology, Nucleation, and Isothermal Crystallization Kinetics of Poly(ε-caprolactone) Mixed with a Polycarbonate/MWCNTs Masterbatch , 2017, Polymers.
[49] A. Müller,et al. Direct Relationship Between Interfacial Microstructure and Confined Crystallization in Poly(Ethylene Oxide)/Silica Composites: The Study of Polymer Molecular Weight Effects , 2017 .
[50] G. Saracco,et al. Supernucleation and Orientation of Poly(butylene terephthalate) Crystals in Nanocomposites Containing Highly Reduced Graphene Oxide , 2017, Macromolecules.
[51] H. Salavagione,et al. Influence of the chemical functionalization of graphene on the properties of polypropylene-based nanocomposites , 2017 .
[52] Stephen Z. D. Cheng,et al. 50th Anniversary Perspective: Polymer Crystals and Crystallization: Personal Journeys in a Challenging Research Field , 2017 .
[53] Zhiqiang Fan,et al. Nanohybrid shish-kebab supramolecular structure of single-walled carbon nanotubes/N,N′-dioctyl perylene tetracarboxylic diimide , 2017 .
[54] A. Müller,et al. Nucleating efficiency and thermal stability of industrial non-purified lignins and ultrafine talc in poly(lactic acid) (PLA) , 2017 .
[55] R. Register. A “Layered Look” for Spherical Nanoparticles in Semicrystalline Polymers , 2017, ACS central science.
[56] S. Deville. The lure of ice templating: recent trends and opportunities for porous materials , 2017, 1706.05875.
[57] P. Dubois,et al. PLA/SiO2 composites: Influence of the filler modifications on the morphology, crystallization behavior, and mechanical properties , 2017 .
[58] P. Dubois,et al. Competition between supernucleation and plasticization in the crystallization and rheological behavior of PCL/CNT‐based nanocomposites and nanohybrids , 2017 .
[59] P. Geerlings,et al. Molecular dynamics simulations of the structure and the morphology of graphene/polymer nanocomposites. , 2017, Physical chemistry chemical physics : PCCP.
[60] J. Breu,et al. Large Scale Self-Assembly of Smectic Nanocomposite Films by Doctor Blading versus Spray Coating: Impact of Crystal Quality on Barrier Properties , 2017 .
[61] Jian-Bing Zeng,et al. Morphology and isothermal crystallization of graphene oxide reinforced biodegradable poly(butylene succinate) , 2017 .
[62] Elodie Bugnicourt,et al. Review on the Processing and Properties of Polymer Nanocomposites and Nanocoatings and Their Applications in the Packaging, Automotive and Solar Energy Fields , 2017, Nanomaterials.
[63] Dujing Wang,et al. Confined crystallization behaviors in polyethylene/silica nanocomposites: Synergetic effects of interfacial interactions and filler network , 2017 .
[64] M. Khani,et al. Tunable Multiscale Nanoparticle Ordering by Polymer Crystallization , 2017, ACS central science.
[65] Y. Liu,et al. Relaxation and Crystallization of Oriented Polymer Melts with Anisotropic Filler Networks. , 2017, The journal of physical chemistry. B.
[66] Richard A. Vaia,et al. 50th Anniversary Perspective: Are Polymer Nanocomposites Practical for Applications? , 2017 .
[67] D. Hughes,et al. Confirmation of a nanohybrid shish-kebab (NHSK) structure in composites of PET and MWCNTs , 2017 .
[68] P. Dubois,et al. The role of PLLA-g-montmorillonite nanohybrids in the acceleration of the crystallization rate of a commercial PLA , 2016 .
[69] W. Hamad,et al. In-situ polymerized cellulose nanocrystals (CNC)-poly(l-lactide) (PLLA) nanomaterials and applications in nanocomposite processing. , 2016, Carbohydrate polymers.
[70] Songjun Li,et al. Molecular simulations of crystallization behaviors of polymers grafted on two-dimensional filler , 2016 .
[71] T. Scheibel,et al. Structural Insights into Water-Based Spider Silk Protein-Nanoclay Composites with Excellent Gas and Water Vapor Barrier Properties. , 2016, ACS applied materials & interfaces.
[72] Zhiqiang Fan,et al. Probe the nucleation mechanism of poly(ε-caprolactone)s grafted on multi-walled carbon nanotubes under structural confinement , 2016 .
[73] Mingshu Yang,et al. Isothermal crystallization of polypropylene/surface modified silica nanocomposites , 2016, Science China Chemistry.
[74] A. Müller,et al. Confined crystallization of polymeric materials , 2016 .
[75] Wei Yang,et al. The effect of the grafted chains on the crystallization of PLLA/PLLA-grafted SiO2 nanocomposites , 2016, Colloid and Polymer Science.
[76] L. Avérous,et al. Nucleation, Crystallization, and Thermal Fractionation of Poly (ε‐Caprolactone)‐Grafted‐Lignin: Effects of Grafted Chains Length and Lignin Content , 2015 .
[77] Zhiping Zhou,et al. Nucleation details of nanohybrid shish-kebabs in polymer solutions studied by molecular simulations , 2015 .
[78] Zhe Ma,et al. Kinetic Process of Shish Formation: From Stretched Network to Stabilized Nuclei , 2015 .
[79] Jia‐Zhuang Xu,et al. Highly Enhanced Crystallization Kinetics of Poly(l-lactic acid) by Poly(ethylene glycol) Grafted Graphene Oxide Simultaneously as Heterogeneous Nucleation Agent and Chain Mobility Promoter , 2015 .
[80] Krishnan A. Iyer,et al. Importance of superior dispersion versus filler surface modification in producing robust polymer nanocomposites: The example of polypropylene/nanosilica hybrids , 2015 .
[81] Q. Fu,et al. Constructing stereocomplex structures at the interface for remarkably accelerating matrix crystallization and enhancing the mechanical properties of poly(L-lactide)/multi-walled carbon nanotube nanocomposites , 2015 .
[82] M. Kamal,et al. Effect of cellulose nanocrystals (CNC) on rheological and mechanical properties and crystallization behavior of PLA/CNC nanocomposites. , 2015, Carbohydrate polymers.
[83] J. Duchet-Rumeau,et al. Chemical modification routes of synthetic talc: Influence on its nucleating power and on its dispersion state , 2015 .
[84] Changyu Han,et al. Confinement crystallization of poly(l-lactide) induced by multiwalled carbon nanotubes and graphene nanosheets , 2015, Journal of Thermal Analysis and Calorimetry.
[85] A. Müller,et al. Successive Self-nucleation and Annealing (SSA): Correct design of thermal protocol and applications , 2015 .
[86] L. Lim,et al. Nanotechnology development in food packaging: A review , 2014 .
[87] J. Kenny,et al. Influence of the carbon nanofiller surface curvature on the initiation of crystallization in thermoplastic polymers , 2014 .
[88] B. Ogunnaike,et al. Quantification of layered silicate dispersion in polymer nanocomposites , 2014 .
[89] P. Dubois,et al. Influence of Chain Branching and Molecular Weight on Melt Rheology and Crystallization of Polyethylene/Carbon Nanotube Nanocomposites , 2014 .
[90] A. Müller,et al. Computer simulations of the early stages of crystal nucleation of linear and short chain branched polyethylene on carbon nanotubes , 2014 .
[91] Scott M. Grayson,et al. Nucleation and Antinucleation Effects of Functionalized Carbon Nanotubes on Cyclic and Linear Poly(ε-caprolactones) , 2014 .
[92] C. Schick,et al. Crystallization of poly(ε-caprolactone)/MWCNT composites: A combined SAXS/WAXS, electrical and thermal conductivity study , 2014 .
[93] Dimitrios J. Giliopoulos,et al. Effect of clay structure and type of organomodifier on the thermal properties of poly(ethylene terephthalate) based nanocomposites , 2014 .
[94] G. Pereira,et al. Organization of polymer chains onto long, single-wall carbon nano-tubes: effect of tube diameter and cooling method. , 2014, The Journal of chemical physics.
[95] Q. Fu,et al. Combined effects of stretching and nanofillers on the crystalline structure and mechanical properties of polypropylene and single-walled carbon nanotube composite fibers , 2014, Chinese Journal of Polymer Science.
[96] Q. Hu,et al. One-pot synthesis of molecular bottle-brush functionalized single-walled carbon nanotubes with superior dispersibility in water. , 2014, Macromolecular rapid communications.
[97] R. Composto,et al. Correction to Dispersion of Polymer-Grafted Nanorods in Homopolymer Films: Theory and Experiment , 2013 .
[98] Wei Zhang,et al. Study of PE and iPP orientations on the surface of carbon nanotubes by using molecular dynamic simulations , 2013 .
[99] R. Krishnamoorti,et al. Rheology of polymer carbon nanotubes composites. , 2013, Soft matter.
[100] Zhiqiang Fan,et al. Isothermal crystallization kinetics of multi-walled carbon nanotubes-graft-poly(ε-caprolactone) with high grafting degrees , 2013 .
[101] Wei Yang,et al. Insight into the nucleating and reinforcing efficiencies of carbon nanofillers in poly(vinylidene fluoride): a comparison between carbon nanotubes and carbon black , 2013, Journal of Materials Science.
[102] Rajesh Kumar,et al. Surface modification of inorganic nanoparticles for development of organic–inorganic nanocomposites—A review , 2013 .
[103] L. Avérous,et al. Synthesis, thermal properties, rheological and mechanical behaviors of lignins-grafted-poly(ε-caprolactone) , 2013 .
[104] G. Ungar,et al. Crystallization of poly(ethylene oxide) embedded with surface‐modified SiO2 nanoparticles , 2013 .
[105] Brian C. Benicewicz,et al. Nanocomposites with Polymer Grafted Nanoparticles , 2013 .
[106] D. Bikiaris,et al. Covalently bonded poly(ethylene succinate)/SiO2 nanocomposites prepared by in situ polymerisation , 2013 .
[107] Xu-Ming Xie,et al. Computational modeling and simulation of nanoparticle self-assembly in polymeric systems: Structures, properties and external field effects , 2013 .
[108] T. Kawai,et al. The effect of the addition of polypropylene grafted SiO2 nanoparticle on the crystallization behavior of isotactic polypropylene , 2013, Journal of Thermal Analysis and Calorimetry.
[109] Wei Zhang,et al. Nanohybrid shish kebab structure and its effect on mechanical properties in poly(L-lactide)/carbon nanotube nanocomposite fibers , 2012 .
[110] Yang Bai,et al. Effect of particle size and surface modification on mechanical properties of poly(para-dioxanone)/inorganic particles , 2012 .
[111] H. Deng,et al. Realizing the enhancement of interfacial interaction in semicrystalline polymer/filler composites via interfacial crystallization , 2012 .
[112] Chuanlu Yang,et al. Isothermal crystallization of short polymer chains induced by the oriented slab and the stretched bundle of polymer: a molecular dynamics simulation. , 2012, The journal of physical chemistry. B.
[113] P. Dubois,et al. Supernucleation and crystallization regime change provoked by MWNT addition to poly(ε-caprolactone) , 2012 .
[114] R. Composto,et al. Nanorod Assemblies in Polymer Films and Their Dispersion-Dependent Optical Properties. , 2012, ACS macro letters.
[115] Pinar Akcora,et al. Structure and Dynamics of Polymer Nanocomposites Involving Chain-Grafted Spherical Nanoparticles , 2012 .
[116] T. Sumitomo,et al. The toughening mechanism of nacre and structural materials inspired by nacre , 2011, Science and technology of advanced materials.
[117] H. Salavagione,et al. Recent advances in the covalent modification of graphene with polymers. , 2011, Macromolecular rapid communications.
[118] Haiyan Mao,et al. Dispersibility and Hydrophobicity Analysis of Titanium Dioxide Nanoparticles Grafted with Silane Coupling Agent , 2011 .
[119] R. Krishnamoorti,et al. Poly(ethylene oxide) crystallization in single walled carbon nanotube based nanocomposites: Kinetics and structural consequences , 2011 .
[120] G. J. Schneider,et al. Dynamics of Entangled Chains in Polymer Nanocomposites , 2011 .
[121] A. Müller,et al. Super-nucleation in nanocomposites and confinement effects on the crystallizable components within block copolymers, miktoarm star copolymers and nanocomposites , 2011 .
[122] S. Wunder,et al. Confinement Effects of Silica Nanoparticles with Radii Smaller and Larger than Rg of Adsorbed Poly(ethylene oxide) , 2011 .
[123] K. Andrikopoulos,et al. Crystallinity and Chain Conformation in PEO/Layered Silicate Nanocomposites , 2011 .
[124] D. Gigmes,et al. Polymer-Grafted-Nanoparticles Nanocomposites: Dispersion, Grafted Chain Conformation, and Rheological Behavior , 2011 .
[125] Ardavan Yazdanbakhsh,et al. Dispersion quantification of inclusions in composites , 2011 .
[126] R. Schweins,et al. Direct Measurement of Polymer Chain Conformation in Well-Controlled Model Nanocomposites by Combining SANS and SAXS , 2010 .
[127] R. Composto,et al. Nanorod self-assembly for tuning optical absorption. , 2010, ACS nano.
[128] J. C. Huang,et al. On the crystallization behavior of the nano-silica filled PEEK composites , 2010 .
[129] Qiang Fu,et al. Superior reinforcement in melt-spun polyethylene/multiwalled carbon nanotube fiber through formation of a shish-kebab structure. , 2010, The journal of physical chemistry. B.
[130] M. Pasquinelli,et al. Molecular dynamics simulations of polymers with stiff backbones interacting with single-walled carbon nanotubes. , 2010, The journal of physical chemistry. B.
[131] S. Diplas,et al. Dispersibility of silane‐functionalized alumina nanoparticles in syndiotactic polypropylene , 2010 .
[132] M. Pasquinelli,et al. Molecular dynamics simulations of flexible polymer chains wrapping single-walled carbon nanotubes. , 2010, The journal of physical chemistry. B.
[133] H. Deng,et al. Hierarchical structure of injection-molded bars of HDPE/MWCNTs composites with novel nanohybrid shish–kebab , 2010 .
[134] N. Demarquette,et al. Quantification of clay dispersion in nanocomposites of styrenic polymers , 2010 .
[135] J. Runt,et al. Microstructure and Dynamics of Semicrystalline Poly(ethylene oxide)−Poly(vinyl acetate) Blends , 2010 .
[136] Pinar Akcora,et al. “Gel-like” Mechanical Reinforcement in Polymer Nanocomposite Melts , 2010 .
[137] D. Bikiaris,et al. Characterization and Crystallization Kinetics of in situ Prepared Poly(propylene terephthalate)/SiO2 Nanocomposites , 2010 .
[138] L. Schadler,et al. Conformational Transitions of Spherical Polymer Brushes: Synthesis, Characterization, and Theory , 2010 .
[139] Zhong‐Ming Li,et al. Poly(L-lactide) crystallization induced by multiwall carbon nanotubes at very low loading , 2009 .
[140] A. Müller,et al. Influence of Macromolecular Architecture on the Crystallization of (PCL2)-b-(PS2) 4-Miktoarm Star Block Copolymers in Comparison to Linear PCL-b-PS Diblock Copolymer Analogues , 2009 .
[141] A. Müller,et al. Surface Modification of Multiwalled Carbon Nanotubes with Biocompatible Polymers via Ring Opening and Living Anionic Surface Initiated Polymerization. Kinetics and Crystallization Behavior , 2009 .
[142] S. R. Bakshi,et al. Quantification of carbon nanotube distribution and property correlation in nanocomposites , 2009 .
[143] Q. Fu,et al. Direct Formation of Nanohybrid Shish-Kebab in the Injection Molded Bar of Polyethylene/Multiwalled Carbon Nanotubes Composite , 2009 .
[144] Pinar Akcora,et al. Polymer Crystallization in Nanocomposites: Spatial Reorganization of Nanoparticles , 2009 .
[145] P. Cui,et al. Preparation and Characterization of Poly(butylene terephthalate)/Silica Nanocomposites , 2009 .
[146] Linda S. Schadler,et al. Anisotropic self-assembly of spherical polymer-grafted nanoparticles. , 2009, Nature materials.
[147] Bing Li,et al. Carbon nanotube induced polymer crystallization: The formation of nanohybrid shish–kebabs , 2009 .
[148] A. Müller,et al. Estimation of the Nucleation and Crystal Growth Contributions to the Overall Crystallization Energy Barrier , 2008 .
[149] L. Robeson,et al. Polymer nanotechnology: Nanocomposites , 2008 .
[150] G. Groeninckx,et al. Features, Questions and Future Challenges in Layered Silicates Clay Nanocomposites with Semicrystalline Polymer Matrices , 2008 .
[151] P. Dubois,et al. Thermal and morphological characterization of nanocomposites prepared by in-situ polymerization of high-density polyethylene on carbon nanotubes , 2007 .
[152] C. Ni,et al. Structure and crystallization behavior of Nylon 66/multi-walled carbon nanotube nanocomposites at low carbon nanotube contents , 2007 .
[153] Jie Jin,et al. A DSC study of effect of carbon nanotubes on crystallisation behaviour of poly(ethylene oxide) , 2007 .
[154] A. Müller,et al. DSC isothermal polymer crystallization kinetics measurements and the use of the Avrami equation to fit the data: Guidelines to avoid common problems , 2007 .
[155] Haiqing Hu,et al. Formation of cylindrite structures in shear-induced crystallization of isotactic polypropylene at low shear rate , 2007 .
[156] Rodney D. Priestley,et al. Model polymer nanocomposites provide an understanding of confinement effects in real nanocomposites. , 2007, Nature materials.
[157] A. Keller,et al. Flow-induced orientation and structure formation , 2006 .
[158] Sixun Zheng,et al. Star-shaped poly(ɛ-caprolactone) with polyhedral oligomeric silsesquioxane core , 2006 .
[159] K. Nitta,et al. The effect of the addition of silica particles on linear spherulite growth rate of isotactic polypropylene and its explanation by lamellar cluster model , 2006 .
[160] Satish Kumar,et al. Single wall carbon nanotube templated oriented crystallization of poly(vinyl alcohol) , 2006 .
[161] Karen I. Winey,et al. Single Wall Carbon Nanotube/Polyethylene Nanocomposites: Nucleating and Templating Polyethylene Crystallites , 2006 .
[162] Eduardo Saiz,et al. Freezing as a Path to Build Complex Composites , 2006, Science.
[163] C. Ni,et al. Polymer crystallization-driven, periodic patterning on carbon nanotubes. , 2006, Journal of the American Chemical Society.
[164] Haiqing Hu,et al. In situ optical microscope study of the shear-induced crystallization of isotactic polypropylene , 2005 .
[165] K. Tenneti,et al. Nanohybrid Shish‐Kebabs: Periodically Functionalized Carbon Nanotubes , 2005 .
[166] Karl I. Jacob,et al. Experimental trends in polymer nanocomposites—a review , 2005 .
[167] D. Frenkel,et al. Onset of heterogeneous crystal nucleation in colloidal suspensions , 2004, Nature.
[168] D. Chaiko. New Poly(ethylene oxide)−Clay Composites , 2003 .
[169] Q. Guo,et al. Crystallization kinetics of poly(ε-caprolactone) in miscible thermosetting polymer blends of epoxy resin and poly(ε-caprolactone) , 2001 .
[170] Thomas J. Pinnavaia,et al. Polymer-layered silicate nanocomposites: an overview , 1999 .
[171] A. Ajdari,et al. Scaling Law for Entropic Effects at Interfaces between Grafted Layers and Polymer Melts , 1998 .
[172] J. Runt,et al. Microstructure of Melt-Miscible, Semicrystalline Polymer Blends , 1996 .
[173] A. Thierry,et al. Efficiency scale for polymer nucleating agents , 1994 .
[174] A. Thierry,et al. Self‐nucleation and recrystallization of isotactic polypropylene (α phase) investigated by differential scanning calorimetry , 1993 .
[175] A. Thierry,et al. Self‐nucleation and enhanced nucleation of polymers. Definition of a convenient calorimetric “efficiency scale” and evaluation of nucleating additives in isotactic polypropylene (α phase) , 1993 .
[176] R. Prud’homme,et al. Crystallization kinetics and melting of caprolactone random copolymers , 1990 .
[177] T. Russell,et al. Neutron and x-ray scattering studies on semicrystalline polymer blends , 1988 .
[178] H. Balard,et al. Influence of the grafting ratio on the conformations of poly(ethylene oxide) chains grafted on silica , 1984 .
[179] G. Strobl,et al. Direct evaluation of the electron density correlation function of partially crystalline polymers , 1980 .
[180] A. J. Lovinger,et al. The Morphology of Directionally Solidified Poly(ethylene oxide) Spherulites , 1976 .
[181] H. D. Keith,et al. Spherulitic Crystallization from the Melt. I. Fractionation and Impurity Segregation and Their Influence on Crystalline Morphology , 1964 .
[182] H. D. Keith,et al. A Phenomenological Theory of Spherulitic Crystallization , 1963 .
[183] John D. Hoffman,et al. Crystallization of Bulk Polymers With Chain Folding: Theory of Growth of Lamellar Spherulites , 1961, Journal of research of the National Bureau of Standards. Section A, Physics and chemistry.
[184] J. Hoffman,et al. Formation of Polymer Crystals with Folded Chains from Dilute Solution , 1959 .
[185] M. Avrami. Granulation, Phase Change, and Microstructure Kinetics of Phase Change. III , 1941 .
[186] G. Tammann,et al. Die Abhängigkeit der Viscosität von der Temperatur bie unterkühlten Flüssigkeiten , 1926 .
[187] G. Fulcher,et al. ANALYSIS OF RECENT MEASUREMENTS OF THE VISCOSITY OF GLASSES , 1925 .
[188] H. Vogel,et al. Das Temperaturabhangigkeitsgesetz der Viskositat von Flussigkeiten , 1921 .