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The blended solution of polycaprolactone (PCL) and calcium carbonate (CaCO3) was treated with hydrochloric acid (HCL), which resulted in the in situ formation of carbon dioxide (CO2) and water.
In this letter, we developed a new wet-spinning system that involves a blended solution of edible oil and hexane as a non-solvent coagulation bath to fabricate oriented poly(ε-caprolactone) (PCL) microfiber scaffold.
In this study, a composite micro/nano fibrous scaffold was fabricated using a single two-nozzle electrospinning system to combine indicative nanofibers from a blended solution of zein-CL and micro-sized fibers from a PCL solution.
For comparison, a single photoactive layer consisting of mixed domains of PCDTBT and PCBM (MX-SL) is prepared by depositing blended solution of PCDTBT and PCBM, which is the most widely used method for fabricating OPVs.
An interfacial layer and active layer were simultaneously fabricated through a facile one-step process using a blended solution of zinc oxide (ZnO) sol-gel as the interfacial material, and P3HT PCBM (poly 3-hexylthiophene):[6,6]-poly 3-hexylthiophenethyl ester) as the photoactive components.
For PLED fabrication, we used a blended solution of poly N-vinyl carbazole) [poly N-vinyliphenylyl)-5-(4-tert-butylphenyl)-1, 3, 4-oxadiazole [PBD], N, N'diphenyl-N, N'-Bis(3-methylphenyl)-[1, 1-biphenyl]-4, 4'-diamine [TPD], and tris(2-(4-tolyl) phenylpyridine) iridium [Ir(mppy)3] dissolved in carbazolezene [PVK] dichlorobenzene [DCB], or a mixture of CB and 1, 2- 4-biphenylyl -5- 4-tert-butylphenyl -1
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Our results indicate that blended solutions of chitosan or alginate with poly ethylene oxide) (PEO) are appropriate for electrospinning when they form conductive, unstructured fluids displaying plasticity, rather than elasticity, in the bulk and at the interface.
In this study, GO-modified nanofibrous biopolymers (GO) were prepared by electrospinning blended solutions of chitosan (80 vol%), polyvinyl pyrrolidone (15 vol%), polyethylene oxide (5 vol%) containing GO nanosheets (0 2 wt%).
Results indicate that when overall concentration of the blended solution increases, quality of the solution increases to result in the increase of values of the three physical properties.
Density, viscosity and surface tension of the blended solution were determined in the range of (293.15 323.15) K, respectively.
Physical characteristics of the blended solution were discussed and compared with that of single component and other blended systems.
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