TUTDoR

Ray, Suprakas Sinha.

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Date: 2020/04/20
Language: en
Type: Text
Identifier: tut:6739
Description: The antimicrobial activity of fibrous membranes with electrospun polylactide (PLA)/silver nanoparticles (AgNPs) depends on the accessibility of the AgNPs, among other factors. The challenge is therefo ... More
Date: 2020/03/05
Language: en
Type: Text
Identifier: tut:6738
Description: The current research trend for excellent miscibility in polymer mixing is the use of plasticizers. The use of most plasticizers usually has some negative effects on the mechanical properties of the re ... More
Date: 2019/07/29
Language: en
Type: Text
Identifier: tut:5529
Description: The problem associated with mixtures of fillers and polymers is that they result in mechanical degradation of the material (polymer) as the filler content increases. This problem will increase the wei ... More
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Date: 2019/07/12
Language: en
Type: Text
Identifier: tut:6700
Description: This study illustrates the effects of the kinetic parameters [processing time, polyvinylidene fluoride (PVDF) viscosity, carbon nanotube (CNT) aspect ratio, and processing method] on the CNT migration ... More
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Date: 2018/12/03
Language: en
Type: Text
Identifier: tut:6706
Description: Abstract: In this study, small amplitude oscillatory shear tests are applied to investigate the rheological responses of polylactide/poly(vinylidene fluoride) (PLA/PVDF) blends and to correlate their ... More
Date: 2018/11/30
Language: en
Type: Text
Identifier: tut:6110
Description: A magnetic nanocomposite (NC), Fe3O4@PPy-MAA, was synthesised via in situ oxidative polymerisation of the pyrrole monomer in a thioglycolic acid (mercaptoacetic acid) solution (as a dopant), in the pr ... More
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Date: 2018/11/05
Language: en
Type: Text
Identifier: tut:5716
Description: Seawater desalination is a promising strategy that offers an abundant and reliable source of clean fresh water. Nanotechnology, in terms of nanoparticles or electrospun nanofibrous membranes, for wate ... More
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Date: 2018/09/20
Language: en
Type: Text
Identifier: tut:5668
Description: Natural fibers, as replacement of engineered fibers, have been one of the most researched topics over the past years. This is due to their inherent properties, such as biodegradability, renewability a ... More
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Date: 2018/03/01
Language: en
Type: Text
Identifier: tut:6704
Description: Processing-driven morphology development and crystallization behavior of immiscible polymer blends are of high significance for the development of polymeric materials with controllable properties. Thi ... More
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Date: 2018/02/26
Language: en
Type: Text
Identifier: tut:5745
Description: In this research, hydrogel biocomposites were prepared from whey protein isolate (WPI), reduced graphene oxide (rGO), and synthetic polymers in varied ratios. Their physicochemical properties were eva ... More
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Date: 2018/02/25
Language: en
Type: Text
Identifier: tut:6698
Description: In immiscible polymer blend nanocomposites, nanoparticles can be localised either in polymer matrices or at the interface, invoking the simple question of how the spatial distribution of the nanoparti ... More
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Date: 2018/01/20
Language: en
Type: Text
Identifier: tut:6572
Description: The influences of surface treatment and the concentration of boehmite alumina (BA) particles on polypropylene and poly- styrene (PS) (80/20) blends produced via melt compounding were examined. The res ... More
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Date: 2018/01/01
Language: en
Type: Text
Identifier: tut:6717
Description: Polymer nanocomposites are a relatively new class of material containing components with at least one dimension less than 100 nm. This chapter provides an introduction to these polymer nanocomposites ... More
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Date: 2018/01/01
Language: en
Type: Text
Identifier: tut:6718
Description: Layered silicate-containing polymer nanocomposites attract great interest in today’s advanced composite materials research because it is possible to achieve impressive property improvements when compa ... More
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Date: 2018/01/01
Language: en
Type: Text
Identifier: tut:6719
Description: The performance of a heterogeneous material, such as polymer nanocomposites (PNCs) is dictated by three main factors: (i) the inherent properties of the components; (ii) interfacial interactions; and ... More
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