Control of the Crystalline Morphology of Poly(l-lactide) by Addition of High-Melting-Point Poly(l-lactide) and Its Effect on the Distribution of Multiwalled Carbon Nanotubes.
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Summary
The high crystallinity and reconstructed MWCNT network also enhanced the Young modulus, elongation at break, and elastic modulus at high temperature of PLLA/MWCNT nanocomposites with small amounts of hPLLA.
- Type
- dissertation
- Published
- 2016-07-20
- Cited by
- 43
- References
- 56
- Access
- Open access
- OpenAlex
- https://openalex.org/W27379385
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:4746023
Keywords
Humanities, Political science, Philosophy
References
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- A simple strategy to achieve very low percolation threshold via the selective distribution of carbon nanotubes at the interface of polymer blends
- Small but strong: A review of the mechanical properties of carbon nanotube–polymer composites
- The electrical properties and crystallization of stereocomplex poly(lactic acid) filled with carbon nanotubes
- Role of surface chemical groups on carbon nanotubes in nucleation for polymer crystallization: Interfacial interaction and steric effect
- Enhancing mechanical performance of polylactide by tailoring crystal morphology and lamellae orientation with the aid of nucleating agent
- Recent advances in graphene based polymer composites
- Carbon nanotube–polymer composites: Chemistry, processing, mechanical and electrical properties
- Effect of melting and crystallization on the conductive network in conductive polymer composites
- Design of electrical conductive composites: tuning the morphology to improve the electrical properties of graphene filled immiscible polymer blends.
- Selective localization of multiwalled carbon nanotubes in poly(epsilon-caprolactone)/polylactide blend.
- Comparison of electrical properties between multi-walled carbon nanotube and graphene nanosheet/high density polyethylene composites with a segregated network structure
- Insight into the annealing peak and microstructural changes of poly(l-lactic acid) by annealing at elevated temperatures
Cited by
- Formation of thermally conductive networks in isotactic polypropylene/hexagonal boron nitride composites via “Bridge Effect” of multi-wall carbon nanotubes and graphene nanoplatelets
- New approach to morphological control for polypropylene/polyethylene blends via magnetic self-organization
- Ultralow Percolation Threshold in Poly(l-lactide)/Poly(ε-caprolactone)/Multiwall Carbon Nanotubes Composites with a Segregated Electrically Conductive Network
- Morphological regulation improved electrical conductivity and electromagnetic interference shielding in poly(L-lactide)/poly(ε-caprolactone)/carbon nanotube nanocomposites via constructing stereocomplex crystallites
- Crystallization kinetics and morphology of biodegradable Poly(ε-caprolactone) with chain-like distribution of ferroferric oxide nanoparticles: Toward mechanical enhancements
- Enhanced electrical conductivity and piezoresistive sensing in multi-wall carbon nanotubes/polydimethylsiloxane nanocomposites via the construction of a self-segregated structure.
- Tailor-Made Dispersion and Distribution of Stereocomplex Crystallites in Poly(l-lactide)/Elastomer Blends toward Largely Enhanced Crystallization Rate and Impact Toughness.
- Morphology, rheological and crystallization behavior in thermoplastic polyurethane toughed poly(l-lactide) with stereocomplex crystallites
- Ultralow percolation threshold and enhanced electromagnetic interference shielding in poly(L-lactide)/multi-walled carbon nanotube nanocomposites with electrically conductive segregated networks
- Morphological, rheological, crystalline and mechanical properties of ethylene-vinyl acetate copolymer/linear low-density polyethylene/amphiphilic graphene oxide nanocomposites
- Influence of different β-nucleation agents on poly(L-lactic acid): structure, morphology, and dynamic mechanical behavior
- Tailoring toughness of fully biobased poly(lactic acid)/natural rubber blends through dynamic vulcanization
- Graphene oxide-assisted dispersion of multi-walled carbon nanotubes in biodegradable Poly(ε-caprolactone) for mechanical and electrically conductive enhancement
- A facile approach to constructing efficiently segregated conductive networks in poly(lactic acid)/silver nanocomposites via silver plating on microfibers for electromagnetic interference shielding
- Segregated polypropylene/cross-linked poly(ethylene-co-1-octene)/multi-walled carbon nanotube nanocomposites with low percolation threshold and dominated negative temperature coefficient effect: Towards electromagnetic interference shielding and thermistors
- Low magnetic field-induced alignment of nickel particles in segregated poly(l-lactide)/poly(ε-caprolactone)/multi-walled carbon nanotube nanocomposites: Towards remarkable and tunable conductive anisotropy
- Low magnetic field-induced morphological regulation in isotactic polypropylene/poly(ε-caprolactone)/carbon black composites for high electrical conductivity and conductive anisotropy
- A facile approach to fabricating silver-coated cotton fiber non-woven fabrics for ultrahigh electromagnetic interference shielding
- Constructing multiple interfaces in polydimethylsiloxane/multi-walled carbon nanotubes nanocomposites by the incorporation of cotton fibers for high-performance electromagnetic interference shielding and mechanical enhancement
- Percolation behavior of electromagnetic interference shielding in polymer/multi-walled carbon nanotube nanocomposites
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