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Polybenzimidazole nanofiber produced by electrospinning.: An article from: Polymer Engineering and Science

Author Jong-Sang Kim, Darrel H. Reneker
Publisher Society of Plastics Engineers, Inc.
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Book Details
ISBN / ASINB00098VI90
ISBN-13978B00098VI90
AvailabilityAvailable for download now
Sales Rank13,146,917
MarketplaceUnited States 🇺🇸

Description

This digital document is an article from Polymer Engineering and Science, published by Society of Plastics Engineers, Inc. on May 1, 1999. The length of the article is 2504 words. The page length shown above is based on a typical 300-word page. The article is delivered in HTML format and is available in your Amazon.com Digital Locker immediately after purchase. You can view it with any web browser.

From the author: Nanofibers of aromatic heterocyclic PBI (poly(2,2[prime](m-phenylene)-5,5[prime] bibenzimidazole)) polymer were made by an electrospinning process. The diameter of the fibers was around 300 nanometers. A liquid jet of a polymer solution, formed when electrical force overcame surface tension, stretched and dried as the solvent evaporated. The resulting electrically charged nanofibers were attracted to and collected on a rotating cylinder covered with aluminum foil that was electrically grounded. The fibers were collected in non-woven sheets about 20 centimeters wide and 100 centimeters long, with a compressed thickness of a few tens of microns. The mass per unit area of the nonwoven sheets was 15 to 50 g/[m.sup.2]. The nonwoven fabric of PBI nanofibers was treated with sulfuric acid, and then washed, dried and heated to improve its strength. Optical microscopy showed that the electrospun PBI nanofibers fibers were birefringent. Other morphological features of these fibers were observed with scanning electron microscopy, transmission electron microscopy and atomic force microscopy.

Citation Details
Title: Polybenzimidazole nanofiber produced by electrospinning.
Author: Jong-Sang Kim
Publication:Polymer Engineering and Science (Refereed)
Date: May 1, 1999
Publisher: Society of Plastics Engineers, Inc.
Volume: 39 Issue: 5 Page: 849(6)

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