Analysis of crystalline structure and morphology of isotactic polypropylene under the coexistence of organic montmorillonite particles and shear flow
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Shaoyun Guo | Jiang Li | Hong Wu | Fan Lei | Huimin Sun | Jiabin Shen | Rong-Yi Chen | Y. Xiong | Huaning Yu | Shuo Yang
[1] Xuesi Chen,et al. Nucleating effect and crystal morphology controlling based on binary phase behavior between organic nucleating agent and poly(l-lactic acid) , 2015 .
[2] Shaoyun Guo,et al. Formation Mechanism and Morphology of β-Transcrystallinity of Polypropylene Induced by Two-Dimensional Layered Interface , 2015 .
[3] 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 .
[4] G. Camino,et al. Oriented clay nanopaper from biobased components--mechanisms for superior fire protection properties. , 2015, ACS applied materials & interfaces.
[5] E. B. Gowd,et al. Polypropylene/Layered Double Hydroxide (LDH) Nanocomposites: Influence of LDH Particle Size on the Crystallization Behavior of Polypropylene. , 2015, ACS applied materials & interfaces.
[6] F. Medellín-Rodríguez,et al. Morphology and chain mobility of reactive blend nanocomposites of PP‐EVA/Clay , 2014 .
[7] Shaoyun Guo,et al. Exfoliation of organic montmorillonite in iPP free of compatibilizer through the multistage stretching extrusion , 2014, Polymer Bulletin.
[8] Shaoyun Guo,et al. Evaluation of the fracture behaviors of multilayered propylene–ethylene copolymer/polypropylene homopolymer composites with the essential work of fracture , 2014 .
[9] A. Muliana,et al. Mechanical reinforcement of epoxy with self-assembled synthetic clay in smectic order. , 2014, ACS applied materials & interfaces.
[10] Jianwen Liu,et al. Bio-based semi-aromatic polyamide/functional clay nanocomposites: preparation and properties , 2014 .
[11] P. Li,et al. Large-scale self-assembled zirconium phosphate smectic layers via a simple spray-coating process , 2014, Nature Communications.
[12] X. Ji,et al. Improved performance balance of polyethylene by simultaneously forming oriented crystals and blending ultrahigh-molecular-weight polyethylene , 2014 .
[13] Jiachun Feng,et al. Different crystallization behavior of olefin block copolymer in α- and β-polypropylene matrix , 2013 .
[14] E. Piorkowska,et al. Nonisothermal shear-induced crystallization of polypropylene-based composite materials with montmorillonite , 2013 .
[15] V. Choudhary,et al. Role of compatibilizer and processing method on the mechanical, thermal and barrier properties of polystyrene/organoclay nanocomposites , 2013 .
[16] R. S. Mauler,et al. Polyolefin-based nanocomposites: the effect of organosilane on organoclay dispersion , 2013, Journal of Materials Science.
[17] Jun Luo,et al. Preferential distribution of clay layers in iPP/OMMT/PEOc ternary nanocomposites , 2012 .
[18] S. Botta,et al. Properties and Semicrystalline Structure Evolution of Polypropylene/Montmorillonite Nanocomposites under Mechanical Load , 2012 .
[19] B. Hsiao,et al. In Situ Synchrotron X-ray Scattering Study on Isotactic Polypropylene Crystallization under the Coexistence of Shear Flow and Carbon Nanotubes , 2011 .
[20] Ya Cao,et al. Montmorillonite/polypropylene nanocomposites: Mechanical properties, crystallization and rheological behaviors , 2011 .
[21] C. Chen,et al. Graphene Nanosheets and Shear Flow Induced Crystallization in Isotactic Polypropylene Nanocomposites , 2011 .
[22] Shaoyun Guo,et al. Interfacial crystalline structures in injection over-molded polypropylene and bond strength. , 2010, ACS applied materials & interfaces.
[23] H. Deng,et al. New Understanding in Tuning Toughness of β-Polypropylene: The Role of β-Nucleated Crystalline Morphology , 2009 .
[24] Pierre J. Carreau,et al. Effect of processing on the crystalline orientation, morphology, and mechanical properties of polypropylene cast films and microporous membrane formation , 2009 .
[25] Dujing Wang,et al. Shear-induced orientation in the crystallization of an isotactic polypropylene nanocomposite , 2009 .
[26] G. Zhong,et al. Unusual Tuning of Mechanical Properties of Isotactic Polypropylene Using Counteraction of Shear Flow and β-Nucleating Agent on β-form Nucleation , 2009 .
[27] A. Galeski,et al. Shear-induced crystallization of isotactic polypropylene based nanocomposites with montmorillonite , 2009 .
[28] Constantine D. Papaspyrides,et al. A review on polymer–layered silicate nanocomposites , 2008 .
[29] P. Carreau,et al. Analysis of row nucleated lamellar morphology of polypropylene obtained from the cast film process: Effect of melt rheology and process conditions , 2007 .
[30] Y. Inoue,et al. Deconvolution analyses of differential scanning calorimetry profiles of β-crystallized polypropylenes with synchronized X-ray measurements , 2007 .
[31] Haiqing Hu,et al. Formation of cylindrite structures in shear-induced crystallization of isotactic polypropylene at low shear rate , 2007 .
[32] G. G. Peters,et al. Modeling of Flow-Induced Crystallization of Particle-Filled Polymers , 2006 .
[33] Aihua He,et al. Preparation of exfoliated isotactic polypropylene/alkyl-triphenylphosphonium-modified montmorillonite nanocomposites via in situ intercalative polymerization , 2006 .
[34] B. Goderis,et al. Influence of shear flow on the preparation of polymer layered silicate nanocomposites , 2005 .
[35] M. Xanthos,et al. Effects of process conditions and mixing protocols on structure of extruded polypropylene nanocomposites , 2004 .
[36] E. Woo,et al. Analyses of crystal forms in syndiotactic polystyrene intercalated with layered nano-clays , 2004 .
[37] Xuehong Lu,et al. Effects of clay on polymorphism of polypropylene in polypropylene/clay nanocomposites , 2004 .
[38] Shu-ying Gu,et al. Rheology of poly(propylene)/clay nanocomposites , 2004 .
[39] Jae Wook Lee,et al. Power ultrasound effects for in situ compatibilization of polymer–clay nanocomposites , 2004 .
[40] Suprakas Sinha Ray,et al. POLYMER/LAYERED SILICATE NANOCOMPOSITES: A REVIEW FROM PREPARATION TO PROCESSING , 2003 .
[41] Dujing Wang,et al. Optical microscopic study on the morphologies of isotactic polypropylene induced by its homogeneity fibers , 2003 .
[42] S. Bourbigot,et al. Crystallization behavior of PA-6 clay nanocomposite hybrid , 2002 .
[43] B. Hsiao,et al. Shear-Induced Precursor Structures in Isotactic Polypropylene Melt by in-Situ Rheo-SAXS and Rheo-WAXD Studies , 2002 .
[44] P. Dubois,et al. Poly(ε-caprolactone)/clay nanocomposites prepared by melt intercalation: mechanical, thermal and rheological properties , 2002 .
[45] Emmanuel P. Giannelis,et al. NEW ADVANCES IN POLYMER/LAYERED SILICATE NANOCOMPOSITES , 2002 .
[46] Kyung-Mox Cho,et al. Real time in situ X-ray diffraction studies on the melting memory effect in the crystallization of β-isotactic polypropylene , 2002 .
[47] B. Hsiao,et al. Shear-Enhanced Crystallization in Isotactic Polypropylene. 3. Evidence for a Kinetic Pathway to Nucleation , 2002 .
[48] A. Nogales,et al. Structure Development during Shear Flow Induced Crystallization of i-PP: In Situ Wide-Angle X-ray Diffraction Study , 2001 .
[49] Thomas J. Pinnavaia,et al. Polymer-clay nanocomposites , 2000 .
[50] M. Bevis,et al. Processing and Physical Property Relationships in Injection-Molded Isotactic Polypropylene .2. Morphology and Crystallinity , 1997 .
[51] J. Karger‐Kocsis,et al. Rules of supermolecular structure formation in sheared isotactic polypropylene melts , 1996 .
[52] G. Ehrenstein,et al. Formation of β-modification of isotactic polypropylene in its late stage of crystallization , 1996 .
[53] J. Karger‐Kocsis,et al. Interfacial morphologies in carbon fibre-reinforced polypropylene microcomposites , 1995 .
[54] S. Picken,et al. Structure and rheology of aramid solutions: x-ray scattering measurements , 1990 .
[55] J. Varga. Melting memory effect of the β-modification of polypropylene , 1986 .
[56] D. Bassett,et al. An improved permanganic etchant for polyolefines , 1982 .
[57] A. T. Jones,et al. Crystalline forms of isotactic polypropylene , 1964 .