Miscibility studies on a copolyester of bisphenol-A with terephthalic and isophthalic acids/bisphenol-A polycarbonate blends

The miscibility behavior of the blends of a copolyester of bisphenol-A with terephthalic and isophthalic acids (PAr) and a bisphenol-A polycarbonate (PC) was studied in dilute chloroform solutions at 25°C. The intrinsic viscosity and Huggins' parameter of the binary mixtures were determined fro...

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Published in:Journal of applied polymer science Vol. 117; no. 1; pp. 309 - 314
Main Authors: Sakar, Dolunay, Cakar, Fatih, Cankurtaran, Ozlem, Karaman, Ferdane
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Abstract The miscibility behavior of the blends of a copolyester of bisphenol-A with terephthalic and isophthalic acids (PAr) and a bisphenol-A polycarbonate (PC) was studied in dilute chloroform solutions at 25°C. The intrinsic viscosity and Huggins' parameter of the binary mixtures were determined from the intercept and slope of the linear straight line between specific viscosity and the overall polymer concentration at the studied compositions. From experimental results of the intrinsic viscosities of the mixtures, some miscibility parameters Δb, Δb′, (Δb)G, Δ[η], α, and β were obtained by applying the criteria proposed by the research groups Krigbaum and Wall, Catsiff and Hewett, Garcia et al., Sun et al. and Jiang and Han, respectively. The miscibility of mixtures was also studied by using differential scanning calorimetry and fourier transform infrared spectroscopy.
AbstractList The miscibility behavior of the blends of a copolyester of bisphenol-A with terephthalic and isophthalic acids (PAr) and a bisphenol-A polycarbonate (PC) was studied in dilute chloroform solutions at 25[deg]C. The intrinsic viscosity and Huggins' parameter of the binary mixtures were determined from the intercept and slope of the linear straight line between specific viscosity and the overall polymer concentration at the studied compositions. From experimental results of the intrinsic viscosities of the mixtures, some miscibility parameters [Delta]b, [Delta]b', ([Delta]b) super()G [Delta][[eta]], alpha, and beta were obtained by applying the criteria proposed by the research groups Krigbaum and Wall, Catsiff and Hewett, Garcia et al., Sun et al. and Jiang and Han, respectively. The miscibility of mixtures was also studied by using differential scanning calorimetry and fourier transform infrared spectroscopy. 2010 Wiley Periodicals, Inc. J Appl Polym Sci, 2010
The miscibility behavior of the blends of a copolyester of bisphenol‐A with terephthalic and isophthalic acids (PAr) and a bisphenol‐A polycarbonate (PC) was studied in dilute chloroform solutions at 25°C. The intrinsic viscosity and Huggins' parameter of the binary mixtures were determined from the intercept and slope of the linear straight line between specific viscosity and the overall polymer concentration at the studied compositions. From experimental results of the intrinsic viscosities of the mixtures, some miscibility parameters Δb, Δb′, (Δb)G, Δ[η], α, and β were obtained by applying the criteria proposed by the research groups Krigbaum and Wall, Catsiff and Hewett, Garcia et al., Sun et al. and Jiang and Han, respectively. The miscibility of mixtures was also studied by using differential scanning calorimetry and fourier transform infrared spectroscopy. © 2010 Wiley Periodicals, Inc. J Appl Polym Sci, 2010
The miscibility behavior of the blends of a copolyester of bisphenol‐A with terephthalic and isophthalic acids (PAr) and a bisphenol‐A polycarbonate (PC) was studied in dilute chloroform solutions at 25°C. The intrinsic viscosity and Huggins' parameter of the binary mixtures were determined from the intercept and slope of the linear straight line between specific viscosity and the overall polymer concentration at the studied compositions. From experimental results of the intrinsic viscosities of the mixtures, some miscibility parameters Δ b , Δ b ′, (Δ b ) G , Δ[η], α, and β were obtained by applying the criteria proposed by the research groups Krigbaum and Wall, Catsiff and Hewett, Garcia et al., Sun et al. and Jiang and Han, respectively. The miscibility of mixtures was also studied by using differential scanning calorimetry and fourier transform infrared spectroscopy. © 2010 Wiley Periodicals, Inc. J Appl Polym Sci, 2010
The miscibility behavior of the blends of a copolyester of bisphenol-A with terephthalic and isophthalic acids (PAr) and a bisphenol-A polycarbonate (PC) was studied in dilute chloroform solutions at 25°C. The intrinsic viscosity and Huggins' parameter of the binary mixtures were determined from the intercept and slope of the linear straight line between specific viscosity and the overall polymer concentration at the studied compositions. From experimental results of the intrinsic viscosities of the mixtures, some miscibility parameters Δb, Δb′, (Δb)G, Δ[η], α, and β were obtained by applying the criteria proposed by the research groups Krigbaum and Wall, Catsiff and Hewett, Garcia et al., Sun et al. and Jiang and Han, respectively. The miscibility of mixtures was also studied by using differential scanning calorimetry and fourier transform infrared spectroscopy.
The miscibility behavior of the blends of a copolyester of bisphenol-A with terephthalic and isophthalic acids (PAr) and a bisphenol-A polycarbonate (PC) was studied in dilute chloroform solutions at 25 degree C. The intrinsic viscosity and Huggins' parameter of the binary mixtures were determined from the intercept and slope of the linear straight line between specific viscosity and the overall polymer concentration at the studied compositions. From experimental results of the intrinsic viscosities of the mixtures, some miscibility parameters Delta b, Delta b', ( Delta b)G, Delta [ eta ], , and beta were obtained by applying the criteria proposed by the research groups Krigbaum and Wall, Catsiff and Hewett, Garcia et al., Sun et al. and Jiang and Han, respectively. The miscibility of mixtures was also studied by using differential scanning calorimetry and fourier transform infrared spectroscopy. [copy 2010 Wiley Periodicals, Inc. J Appl Polym Sci, 2010
Author Karaman, Ferdane
Cankurtaran, Ozlem
Sakar, Dolunay
Cakar, Fatih
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Issue 1
Keywords Isophthalate polymer
Polymer blends
Property composition relationship
Intrinsic viscosity
Ester polymer
Experimental study
Terephthalate polymer
Organic solution
Bisphenol A
viscosity
Dilute solution
Miscibility
Specific viscosity
Thermodynamic properties
Polycarbonate
bisphenol- a polycarbonate
blends
Interaction parameter
Rheological properties
Polyarylate
Language English
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Snippet The miscibility behavior of the blends of a copolyester of bisphenol-A with terephthalic and isophthalic acids (PAr) and a bisphenol-A polycarbonate (PC) was...
The miscibility behavior of the blends of a copolyester of bisphenol‐A with terephthalic and isophthalic acids (PAr) and a bisphenol‐A polycarbonate (PC) was...
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SubjectTerms Applied sciences
bisphenol- a polycarbonate
blends
Differential scanning calorimetry
Exact sciences and technology
Fourier transforms
Infrared spectroscopy
Miscibility
Organic polymers
Physicochemistry of polymers
Polyarylate
Polycarbonates
Polymer blends
Properties and characterization
Solution and gel properties
Viscosity
Walls
Title Miscibility studies on a copolyester of bisphenol-A with terephthalic and isophthalic acids/bisphenol-A polycarbonate blends
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https://search.proquest.com/docview/901656289
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