Cross-Linking of Polypropylene with Thiophene and Imidazole
暂无分享,去创建一个
[1] Shuwei Li,et al. Engineering of hollow polymeric nanosphere-supported imidazolium-based ionic liquids with enhanced antimicrobial activities , 2022, Nano Research.
[2] F. Picchioni,et al. Cross-Linking of Polypropylene via the Diels–Alder Reaction , 2022, Polymers.
[3] B. Améduri,et al. Trends in the Diels-Alder reaction in polymer chemistry. , 2021, Chemical Society reviews.
[4] Ye-hua Jiang,et al. Thermoreversible and Recycling Properties of Ethylene Propylene Diene Rubber Based on Diels-Alder Reaction , 2021, Macromolecular Research.
[5] S. Caillol,et al. Diels-Alder-Chitosan based dissociative covalent adaptable networks. , 2021, Carbohydrate polymers.
[6] Menglong Wang,et al. Efficient Synthesis of Folate-Conjugated Hollow Polymeric Capsules for Accurate Drug Delivery to Cancer Cells. , 2020, Biomacromolecules.
[7] Wenbo Song,et al. Mechanism of crosslinking in benzoyl peroxide‐initiated functionalization of vinyltriethoxysilane onto polypropylene in the water medium , 2020 .
[8] F. Picchioni,et al. Diels-Alder-based thermo-reversibly crosslinked polymers: Interplay of crosslinking density, network mobility, kinetics and stereoisomerism , 2020, European Polymer Journal.
[9] Xingyi Huang,et al. Material progress toward recyclable insulation of power cables part 2: Polypropylene-based thermoplastic materials , 2020, IEEE Electrical Insulation Magazine.
[10] J. Gonzalez-Gutierrez,et al. Material extrusion‐based additive manufacturing of polypropylene: A review on how to improve dimensional inaccuracy and warpage , 2019, Journal of Applied Polymer Science.
[11] Shuang Yang,et al. Facile construction of one-component intrinsic flame-retardant epoxy resin system with fast curing ability using imidazole-blocked bismaleimide , 2019, Composites Part B: Engineering.
[12] B. Sumerlin,et al. Polypropylene: Now Available without Chain Ends , 2019, Chem.
[13] S. Einloft,et al. Imidazolium-based Ionic Liquids Impregnated in Silica and Alumina Supports for CO2 Capture , 2019, Materials Research.
[14] Reza Jahanmardi,et al. Toward poly(furfuryl alcohol) applications diversification: Novel self-healing network and toughening epoxy–novolac resin , 2018 .
[15] Shaoyun Guo,et al. A reactive extrusion process with the aid of ultrasound for preparing cross‐linked polypropylene , 2017 .
[16] F. Picchioni,et al. Practical application of thermoreversibly Cross-linked rubber products , 2017 .
[17] L. Irusta,et al. Polyurethanes based on isophorone diisocyanate trimer and polypropylene glycol crosslinked by thermal reversible diels alder reactions , 2017 .
[18] Mario E. Flores,et al. Intrinsic self-healing thermoset through covalent and hydrogen bonding interactions , 2016 .
[19] Antonius Broekhuis,et al. Use of Diels–Alder Chemistry for Thermoreversible Cross-Linking of Rubbers: The Next Step toward Recycling of Rubber Products? , 2015 .
[20] Xianghai Ran,et al. Dual-shape memory effect in radiation crosslinked thermoplastic blends: fabrication, optimization and mechanisms , 2015 .
[21] S. Turri,et al. Effect of the plasticizer on the self-healing properties of a polymer coating based on the thermoreversible Diels–Alder reaction , 2015 .
[22] S. Zwaag,et al. A rheological and spectroscopic study on the kinetics of self‐healing in a single‐component diels–alder copolymer and its underlying chemical reaction , 2014 .
[23] D. Villemin,et al. Vibrational spectroscopic study of ionic liquids: Comparison between monocationic and dicationic imidazolium ionic liquids , 2014 .
[24] Xiaojing Liang,et al. Preparation of an aminopropyl imidazole-modified silica gel as a sorbent for solid-phase extraction of carboxylic acid compounds and polycyclic aromatic hydrocarbons. , 2014, The Analyst.
[25] N. Yoshie,et al. Self-healing bio-based furan polymers cross-linked with various bis-maleimides , 2013 .
[26] J. Torkelson,et al. Maleic anhydride functionalization of polypropylene with suppressed molecular weight reduction via solid-state shear pulverization , 2013 .
[27] Yajiang Huang,et al. The rheological property and foam morphology of linear polypropylene and long chain branching polypropylene , 2013, Journal of Wuhan University of Technology-Mater. Sci. Ed..
[28] Min Zhang,et al. Synthesis and Characterization of Maleic Anhydride Grafted Polypropylene with a Well-Defined Molecular Structure , 2013 .
[29] B. Simionescu,et al. Synthesis and Characterization of a New Thermoreversible Polyurethane Network , 2013 .
[30] Shuhui Yu,et al. Tuning the mechanical properties of glass fiber-reinforced bismaleimide–triazine resin composites by constructing a flexible bridge at the interface , 2013, Science and technology of advanced materials.
[31] Alessandro Gandini,et al. The furan/maleimide Diels–Alder reaction: A versatile click–unclick tool in macromolecular synthesis , 2013 .
[32] J. Groenewold,et al. Morphology formation in polypropylene impact copolymers under static melt conditions: A simulation study , 2012 .
[33] R. Bates,et al. Correlation of alkylamine nucleophilicities with their basicities , 2012 .
[34] Antonius Broekhuis,et al. Properties of Reversible Diels-Alder Furan/Maleimide Polymer Networks as Function of Crosslink Density , 2012 .
[35] Ji-ruo Zhao,et al. Structure and mechanism of functional isotactic polypropylene via in situ chlorination graft copolymerization , 2011 .
[36] M. Shibata,et al. High-performance hybrid materials prepared by the thermo-reversible Diels–Alder polymerization of furfuryl ester-terminated butylene succinate oligomers and maleimide compounds , 2011 .
[37] T. Chung,et al. Cross-linking effect on dielectric properties of polypropylene thin films and applications in electric energy storage , 2011 .
[38] S. Sengupta,et al. Silane grafting and moisture crosslinking of polypropylene , 2011 .
[39] A. Leipertz,et al. The role of the C2 position in interionic interactions of imidazolium based ionic liquids: a vibrational and NMR spectroscopic study. , 2010, Physical chemistry chemical physics : PCCP.
[40] D. Venerus,et al. Comparison of rheological behavior of branched polypropylene prepared by chemical modification and electron beam irradiation under air and N2 , 2010 .
[41] C. Jegat,et al. Thermally reversible crosslinked polyethylene using Diels–Alder reaction in molten state , 2010 .
[42] Yan Li,et al. New insight into the action of supercritical carbon dioxide for grafting of maleic anhydride onto isotactic polypropylene by reactive extrusion , 2010 .
[43] Q. Zheng,et al. Study on degradation and crosslinking of impact polypropylene copolymer by dynamic rheological measurement , 2010 .
[44] Zhengping Liu,et al. Polythiophene: Synthesis in aqueous medium and controllable morphology , 2009 .
[45] T. Chung,et al. Cross-Linked Polypropylene Prepared by PP Copolymers Containing Flexible Styrene Groups , 2009 .
[46] Youchun Zhang,et al. Thermally Self-Healing Polymeric Materials : The Next Step to Recycling Thermoset Polymers? , 2009 .
[47] Kun Cao,et al. Synthesis and characterization of high-density polypropylene-grafted polyethylene via a macromolecular reaction and its rheological behavior , 2009 .
[48] G. R. Rao,et al. Synthesis and characterization of hybrid molecular material prepared by ionic liquid and silicotungstic acid , 2008 .
[49] V. Gaina,et al. New Functional Maleimides and Citraconimides for Amide, Urea or Parabanic Aromatic Bismaleimides , 2008 .
[50] J. Coates. Interpretation of Infrared Spectra, A Practical Approach , 2006 .
[51] W. Fan,et al. Thermal and crystallization behavior of silane-crosslinked polypropylene , 2005 .
[52] H. Kotsuki,et al. Diels-Alder reaction of thiophene: dramatic effects of high-pressure/solvent-free conditions. , 2004, Angewandte Chemie.
[53] James L White,et al. Maleic anhydride modification of polyolefin in an internal mixer and a twin‐screw extruder: Experiment and kinetic model , 2001 .
[54] E. Rusu,et al. NEW FUNCTIONAL POLY(BISMALEIMIDE-ETHER)S: SYNTHESIS AND CHARACTERIZATION , 2001 .
[55] R. Legras,et al. Quantification of the maleic anhydride grafted onto polypropylene by chemical and viscosimetric titrations, and FTIR spectroscopy , 2000 .
[56] Erik Andreassen,et al. Infrared and Raman spectroscopy of polypropylene , 1999 .
[57] B. Jursic. Suitability of furan, pyrrole and thiophene as dienes for Diels–Alder reactions viewed through their stability and reaction barriers for reactions with acetylene, ethylene and cyclopropene. An AM1 semiempirical and B3LYP hybrid density functional theory study , 1998 .
[58] T. L. Yu,et al. Effect of isocyanates on the crystallinity and thermal stability of polyurethanes , 1996 .
[59] I. Chodák. Properties of crosslinked polyolefin-based materials , 1995 .
[60] G. Groeninckx,et al. Chemical modification of poly(styrene-co-maleic anhydride) with primary N-alkylamines by reactive extrusion , 1994 .
[61] I. Chodák,et al. Crosslinked polyethylene/polypropene blends, 1. Formation of insoluble parts, crystallization and melting , 1991 .
[62] M. Grimmett. 4.06 – Imidazoles and their Benzo Derivatives: (i) Structure , 1984 .
[63] H. W. Thompson,et al. The infra-red spectra of furan and thiophen , 1945 .