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The Journal of Physical Chemistry. B
|
March 9, 2013
Nonisothermal crystallization of polytetrafluoroethylene in a wide range of cooling rates
Nicolas Bosq, Nathanaël Guigo, Evgeny Zhuravlev, et al.
Polymers
|
May 18, 2019
Visualization of Polymer Crystallization by In Situ Combination of Atomic Force Microscopy and Fast Scanning Calorimetry
Rui Zhang, Evgeny Zhuravlev, René Androsch, et al.
ACS Macro Letters
|
May 26, 2022
Crystallization of Polyethylene at Large Undercooling
Evgeny Zhuravlev, Vadlamudi Madhavi, Arnold Lustiger, et al.
Polymers
|
July 2, 2021
Surface Crystal Nucleation and Growth in Poly (ε-caprolactone): Atomic Force Microscopy Combined with Fast Scanning Chip Calorimetry
Rui Zhang, Mengxue Du, Evgeny Zhuravlev, et al.
Materials (Basel, Switzerland)
|
October 27, 2022
Correlation between Differential Fast Scanning Calorimetry and Additive Manufacturing Results of Aluminium Alloys
Olaf Kessler, Evgeny Zhuravlev, Sigurd Wenner, et al.
Materials (Basel, Switzerland)
|
December 10, 2021
Requirements for Processing High-Strength AlZnMgCu Alloys with PBF-LB/M to Achieve Crack-Free and Dense Parts
Steffen Heiland, Benjamin Milkereit, Kay-Peter Hoyer, et al.
The Journal of Physical Chemistry. B
|
November 15, 2013
Competitive crystallization of a propylene/ethylene random copolymer filled with a β-nucleating agent and multi-walled carbon nanotubes. Conventional and ultrafast DSC study
Dimitrios G Papageorgiou, George Z Papageorgiou, Evgeny Zhuravlev, et al.
Acta Biomaterialia
|
April 9, 2017
Silk I and Silk II studied by fast scanning calorimetry
Peggy Cebe, Benjamin P Partlow, David L Kaplan, et al.
Scientific Reports
|
January 26, 2013
Beating the heat--fast scanning melts silk beta sheet crystals
Peggy Cebe, Xiao Hu, David L Kaplan, et al.
Journal of Colloid and Interface Science
|
December 14, 2025
Stabilizing zinc metal anodes with MXene-derived electrospun titanium dioxide/carbon nanofiber protective layers
Guoyin Zhu, Zhuoyao Shi, Xuan Zhang, et al.
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of 2
Search research articles
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Showing results (1-10 of 12) with videos related to
Sort By:
Page
of 2
The Journal of Physical Chemistry. B
|
March 9, 2013
Nonisothermal crystallization of polytetrafluoroethylene in a wide range of cooling rates
Nicolas Bosq, Nathanaël Guigo, Evgeny Zhuravlev, et al.
Polymers
|
May 18, 2019
Visualization of Polymer Crystallization by In Situ Combination of Atomic Force Microscopy and Fast Scanning Calorimetry
Rui Zhang, Evgeny Zhuravlev, René Androsch, et al.
ACS Macro Letters
|
May 26, 2022
Crystallization of Polyethylene at Large Undercooling
Evgeny Zhuravlev, Vadlamudi Madhavi, Arnold Lustiger, et al.
Polymers
|
July 2, 2021
Surface Crystal Nucleation and Growth in Poly (ε-caprolactone): Atomic Force Microscopy Combined with Fast Scanning Chip Calorimetry
Rui Zhang, Mengxue Du, Evgeny Zhuravlev, et al.
Materials (Basel, Switzerland)
|
October 27, 2022
Correlation between Differential Fast Scanning Calorimetry and Additive Manufacturing Results of Aluminium Alloys
Olaf Kessler, Evgeny Zhuravlev, Sigurd Wenner, et al.
Materials (Basel, Switzerland)
|
December 10, 2021
Requirements for Processing High-Strength AlZnMgCu Alloys with PBF-LB/M to Achieve Crack-Free and Dense Parts
Steffen Heiland, Benjamin Milkereit, Kay-Peter Hoyer, et al.
The Journal of Physical Chemistry. B
|
November 15, 2013
Competitive crystallization of a propylene/ethylene random copolymer filled with a β-nucleating agent and multi-walled carbon nanotubes. Conventional and ultrafast DSC study
Dimitrios G Papageorgiou, George Z Papageorgiou, Evgeny Zhuravlev, et al.
Acta Biomaterialia
|
April 9, 2017
Silk I and Silk II studied by fast scanning calorimetry
Peggy Cebe, Benjamin P Partlow, David L Kaplan, et al.
Scientific Reports
|
January 26, 2013
Beating the heat--fast scanning melts silk beta sheet crystals
Peggy Cebe, Xiao Hu, David L Kaplan, et al.
Journal of Colloid and Interface Science
|
December 14, 2025
Stabilizing zinc metal anodes with MXene-derived electrospun titanium dioxide/carbon nanofiber protective layers
Guoyin Zhu, Zhuoyao Shi, Xuan Zhang, et al.
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of 2