The Experts below are selected from a list of 243 Experts worldwide ranked by ideXlab platform
Suwabun Chirachanchai - One of the best experts on this subject based on the ideXlab platform.
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Directing Thermoplastic Elastomer Microdomain Parallel to Fiber Axis: A Model Case of SEBS with Benzoxazine through π–π Stacking
Macromolecules, 2011Co-Authors: Wonchalerm Rungswang, Takuma Shimojima, Go Kimura, Shinichi Sakurai, Masaya Kotaki, Suwabun ChirachanchaiAbstract:In our previous work, we revealed for the first time the existence of ordered-lamellar microdomains in thermoplastic elastomer based on the case study of an as-spun electrospun polystyrene-b-poly(ethylene-co-1-butene)-b-polystyrene triblock copolymer (SEBS), and also demonstrated how the extensional force initiated a certain level of lamellar-microdomain orientation. The present work shows the approach to direct lamellar-microdomain orientation to be parallel to the Fiber Axis by simply initiating a specific molecular interaction among thermoplastic elastomer chains. The blend system of SEBS and bisphenol A based benzoxazine monomer (BZ) forms π–π interaction as confirmed by the nuclear overhauser effect in the nuclear magnetic resonance spectroscopy (NOESY NMR). The electrospun Fibers of this blend under a low take-up velocity (below 310 m/min) show not only microdomain orientation but also (i) the fragmented lamellar grains which orient almost perfectly parallel to the stretching direction (SD) or Fiber...
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directing thermoplastic elastomer microdomain parallel to Fiber Axis a model case of sebs with benzoxazine through π π stacking
Macromolecules, 2011Co-Authors: Wonchalerm Rungswang, Takuma Shimojima, Go Kimura, Shinichi Sakurai, Masaya Kotaki, Suwabun ChirachanchaiAbstract:In our previous work, we revealed for the first time the existence of ordered-lamellar microdomains in thermoplastic elastomer based on the case study of an as-spun electrospun polystyrene-b-poly(ethylene-co-1-butene)-b-polystyrene triblock copolymer (SEBS), and also demonstrated how the extensional force initiated a certain level of lamellar-microdomain orientation. The present work shows the approach to direct lamellar-microdomain orientation to be parallel to the Fiber Axis by simply initiating a specific molecular interaction among thermoplastic elastomer chains. The blend system of SEBS and bisphenol A based benzoxazine monomer (BZ) forms π–π interaction as confirmed by the nuclear overhauser effect in the nuclear magnetic resonance spectroscopy (NOESY NMR). The electrospun Fibers of this blend under a low take-up velocity (below 310 m/min) show not only microdomain orientation but also (i) the fragmented lamellar grains which orient almost perfectly parallel to the stretching direction (SD) or Fiber...
Wonchalerm Rungswang - One of the best experts on this subject based on the ideXlab platform.
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Directing Thermoplastic Elastomer Microdomain Parallel to Fiber Axis: A Model Case of SEBS with Benzoxazine through π–π Stacking
Macromolecules, 2011Co-Authors: Wonchalerm Rungswang, Takuma Shimojima, Go Kimura, Shinichi Sakurai, Masaya Kotaki, Suwabun ChirachanchaiAbstract:In our previous work, we revealed for the first time the existence of ordered-lamellar microdomains in thermoplastic elastomer based on the case study of an as-spun electrospun polystyrene-b-poly(ethylene-co-1-butene)-b-polystyrene triblock copolymer (SEBS), and also demonstrated how the extensional force initiated a certain level of lamellar-microdomain orientation. The present work shows the approach to direct lamellar-microdomain orientation to be parallel to the Fiber Axis by simply initiating a specific molecular interaction among thermoplastic elastomer chains. The blend system of SEBS and bisphenol A based benzoxazine monomer (BZ) forms π–π interaction as confirmed by the nuclear overhauser effect in the nuclear magnetic resonance spectroscopy (NOESY NMR). The electrospun Fibers of this blend under a low take-up velocity (below 310 m/min) show not only microdomain orientation but also (i) the fragmented lamellar grains which orient almost perfectly parallel to the stretching direction (SD) or Fiber...
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directing thermoplastic elastomer microdomain parallel to Fiber Axis a model case of sebs with benzoxazine through π π stacking
Macromolecules, 2011Co-Authors: Wonchalerm Rungswang, Takuma Shimojima, Go Kimura, Shinichi Sakurai, Masaya Kotaki, Suwabun ChirachanchaiAbstract:In our previous work, we revealed for the first time the existence of ordered-lamellar microdomains in thermoplastic elastomer based on the case study of an as-spun electrospun polystyrene-b-poly(ethylene-co-1-butene)-b-polystyrene triblock copolymer (SEBS), and also demonstrated how the extensional force initiated a certain level of lamellar-microdomain orientation. The present work shows the approach to direct lamellar-microdomain orientation to be parallel to the Fiber Axis by simply initiating a specific molecular interaction among thermoplastic elastomer chains. The blend system of SEBS and bisphenol A based benzoxazine monomer (BZ) forms π–π interaction as confirmed by the nuclear overhauser effect in the nuclear magnetic resonance spectroscopy (NOESY NMR). The electrospun Fibers of this blend under a low take-up velocity (below 310 m/min) show not only microdomain orientation but also (i) the fragmented lamellar grains which orient almost perfectly parallel to the stretching direction (SD) or Fiber...
Takuma Shimojima - One of the best experts on this subject based on the ideXlab platform.
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Directing Thermoplastic Elastomer Microdomain Parallel to Fiber Axis: A Model Case of SEBS with Benzoxazine through π–π Stacking
Macromolecules, 2011Co-Authors: Wonchalerm Rungswang, Takuma Shimojima, Go Kimura, Shinichi Sakurai, Masaya Kotaki, Suwabun ChirachanchaiAbstract:In our previous work, we revealed for the first time the existence of ordered-lamellar microdomains in thermoplastic elastomer based on the case study of an as-spun electrospun polystyrene-b-poly(ethylene-co-1-butene)-b-polystyrene triblock copolymer (SEBS), and also demonstrated how the extensional force initiated a certain level of lamellar-microdomain orientation. The present work shows the approach to direct lamellar-microdomain orientation to be parallel to the Fiber Axis by simply initiating a specific molecular interaction among thermoplastic elastomer chains. The blend system of SEBS and bisphenol A based benzoxazine monomer (BZ) forms π–π interaction as confirmed by the nuclear overhauser effect in the nuclear magnetic resonance spectroscopy (NOESY NMR). The electrospun Fibers of this blend under a low take-up velocity (below 310 m/min) show not only microdomain orientation but also (i) the fragmented lamellar grains which orient almost perfectly parallel to the stretching direction (SD) or Fiber...
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directing thermoplastic elastomer microdomain parallel to Fiber Axis a model case of sebs with benzoxazine through π π stacking
Macromolecules, 2011Co-Authors: Wonchalerm Rungswang, Takuma Shimojima, Go Kimura, Shinichi Sakurai, Masaya Kotaki, Suwabun ChirachanchaiAbstract:In our previous work, we revealed for the first time the existence of ordered-lamellar microdomains in thermoplastic elastomer based on the case study of an as-spun electrospun polystyrene-b-poly(ethylene-co-1-butene)-b-polystyrene triblock copolymer (SEBS), and also demonstrated how the extensional force initiated a certain level of lamellar-microdomain orientation. The present work shows the approach to direct lamellar-microdomain orientation to be parallel to the Fiber Axis by simply initiating a specific molecular interaction among thermoplastic elastomer chains. The blend system of SEBS and bisphenol A based benzoxazine monomer (BZ) forms π–π interaction as confirmed by the nuclear overhauser effect in the nuclear magnetic resonance spectroscopy (NOESY NMR). The electrospun Fibers of this blend under a low take-up velocity (below 310 m/min) show not only microdomain orientation but also (i) the fragmented lamellar grains which orient almost perfectly parallel to the stretching direction (SD) or Fiber...
Go Kimura - One of the best experts on this subject based on the ideXlab platform.
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Directing Thermoplastic Elastomer Microdomain Parallel to Fiber Axis: A Model Case of SEBS with Benzoxazine through π–π Stacking
Macromolecules, 2011Co-Authors: Wonchalerm Rungswang, Takuma Shimojima, Go Kimura, Shinichi Sakurai, Masaya Kotaki, Suwabun ChirachanchaiAbstract:In our previous work, we revealed for the first time the existence of ordered-lamellar microdomains in thermoplastic elastomer based on the case study of an as-spun electrospun polystyrene-b-poly(ethylene-co-1-butene)-b-polystyrene triblock copolymer (SEBS), and also demonstrated how the extensional force initiated a certain level of lamellar-microdomain orientation. The present work shows the approach to direct lamellar-microdomain orientation to be parallel to the Fiber Axis by simply initiating a specific molecular interaction among thermoplastic elastomer chains. The blend system of SEBS and bisphenol A based benzoxazine monomer (BZ) forms π–π interaction as confirmed by the nuclear overhauser effect in the nuclear magnetic resonance spectroscopy (NOESY NMR). The electrospun Fibers of this blend under a low take-up velocity (below 310 m/min) show not only microdomain orientation but also (i) the fragmented lamellar grains which orient almost perfectly parallel to the stretching direction (SD) or Fiber...
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directing thermoplastic elastomer microdomain parallel to Fiber Axis a model case of sebs with benzoxazine through π π stacking
Macromolecules, 2011Co-Authors: Wonchalerm Rungswang, Takuma Shimojima, Go Kimura, Shinichi Sakurai, Masaya Kotaki, Suwabun ChirachanchaiAbstract:In our previous work, we revealed for the first time the existence of ordered-lamellar microdomains in thermoplastic elastomer based on the case study of an as-spun electrospun polystyrene-b-poly(ethylene-co-1-butene)-b-polystyrene triblock copolymer (SEBS), and also demonstrated how the extensional force initiated a certain level of lamellar-microdomain orientation. The present work shows the approach to direct lamellar-microdomain orientation to be parallel to the Fiber Axis by simply initiating a specific molecular interaction among thermoplastic elastomer chains. The blend system of SEBS and bisphenol A based benzoxazine monomer (BZ) forms π–π interaction as confirmed by the nuclear overhauser effect in the nuclear magnetic resonance spectroscopy (NOESY NMR). The electrospun Fibers of this blend under a low take-up velocity (below 310 m/min) show not only microdomain orientation but also (i) the fragmented lamellar grains which orient almost perfectly parallel to the stretching direction (SD) or Fiber...
Shinichi Sakurai - One of the best experts on this subject based on the ideXlab platform.
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Directing Thermoplastic Elastomer Microdomain Parallel to Fiber Axis: A Model Case of SEBS with Benzoxazine through π–π Stacking
Macromolecules, 2011Co-Authors: Wonchalerm Rungswang, Takuma Shimojima, Go Kimura, Shinichi Sakurai, Masaya Kotaki, Suwabun ChirachanchaiAbstract:In our previous work, we revealed for the first time the existence of ordered-lamellar microdomains in thermoplastic elastomer based on the case study of an as-spun electrospun polystyrene-b-poly(ethylene-co-1-butene)-b-polystyrene triblock copolymer (SEBS), and also demonstrated how the extensional force initiated a certain level of lamellar-microdomain orientation. The present work shows the approach to direct lamellar-microdomain orientation to be parallel to the Fiber Axis by simply initiating a specific molecular interaction among thermoplastic elastomer chains. The blend system of SEBS and bisphenol A based benzoxazine monomer (BZ) forms π–π interaction as confirmed by the nuclear overhauser effect in the nuclear magnetic resonance spectroscopy (NOESY NMR). The electrospun Fibers of this blend under a low take-up velocity (below 310 m/min) show not only microdomain orientation but also (i) the fragmented lamellar grains which orient almost perfectly parallel to the stretching direction (SD) or Fiber...
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directing thermoplastic elastomer microdomain parallel to Fiber Axis a model case of sebs with benzoxazine through π π stacking
Macromolecules, 2011Co-Authors: Wonchalerm Rungswang, Takuma Shimojima, Go Kimura, Shinichi Sakurai, Masaya Kotaki, Suwabun ChirachanchaiAbstract:In our previous work, we revealed for the first time the existence of ordered-lamellar microdomains in thermoplastic elastomer based on the case study of an as-spun electrospun polystyrene-b-poly(ethylene-co-1-butene)-b-polystyrene triblock copolymer (SEBS), and also demonstrated how the extensional force initiated a certain level of lamellar-microdomain orientation. The present work shows the approach to direct lamellar-microdomain orientation to be parallel to the Fiber Axis by simply initiating a specific molecular interaction among thermoplastic elastomer chains. The blend system of SEBS and bisphenol A based benzoxazine monomer (BZ) forms π–π interaction as confirmed by the nuclear overhauser effect in the nuclear magnetic resonance spectroscopy (NOESY NMR). The electrospun Fibers of this blend under a low take-up velocity (below 310 m/min) show not only microdomain orientation but also (i) the fragmented lamellar grains which orient almost perfectly parallel to the stretching direction (SD) or Fiber...