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Nasrullah Shah

Other affiliations: Kyungpook National University
Bio: Nasrullah Shah is an academic researcher from Abdul Wali Khan University Mardan. The author has contributed to research in topics: Adsorption & Fourier transform infrared spectroscopy. The author has an hindex of 16, co-authored 45 publications receiving 1156 citations. Previous affiliations of Nasrullah Shah include Kyungpook National University.


Papers
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Journal ArticleDOI
TL;DR: Various synthetic approaches for BC composite synthesis, classes of BC composites, and applications ofBC composites are compiled in this review to increase interest in BC composite and the development of new ideas in this field.

533 citations

Journal ArticleDOI
TL;DR: This review has summarized major efforts to enhance BC production in order to make it a cost-effective biopolymer and exploration of novel and efficient BC producing microbial strains provides impressive boost to the BC production processes.

164 citations

Journal ArticleDOI
TL;DR: In this article, a BC-Ch composites with improved physico-mechanical characteristics was used for wound dressing and other biomedical applications, which showed superior mechanical properties, water holding capacity, and water release rate compared to pure BC.
Abstract: Bacterial cellulose-chitosan composites (BC-Ch) were prepared in order to obtain the BC-Ch composites with improved physico-mechanical characteristics. BC sheets were immersed in a Ch solution hoping that the Ch penetrates into the BC sheet. Ch penetration was observed according to variations in temperature, operation mode and treatment time. The morphological changes due to enhanced penetration were observed through FE-SEM, FT-IR and XRD analysis. FE-SEM analyses confirmed the formation of three dimensional multilayered structures in BC-Ch, whose thickness increased with Ch penetration. The FT-IR analysis showed intermolecular hydrogen bonding interaction between the BC and Ch molecules. XRD results revealed a slight decrease in the crystallinity index of the BC-Ch composites compared to pure BC. The mechanical properties, water holding capacity (WHC) and water release rate (WRR) of the BC-Ch composites were significantly improved compared to pure BC. The superior mechanical properties, WHC and water release rate would make the BC-Ch composites suitable for wound dressing and other biomedical applications.

125 citations

Journal ArticleDOI
TL;DR: This review focuses on hollow fiber based techniques (especially HF-LPME and EME) of heavy metals and pharmaceuticals, and their combinations with atomic spectroscopy, UV-VIS spectrophotometry, high performance liquid Chromatography, gas chromatography, capillary electrophoresis, and voltammetry.

75 citations

Journal ArticleDOI
19 Nov 2021-Energies
TL;DR: In this article, a review of various types of supercapacitors, such as electrochemical double-layer capacitors, hybrid supercapACs, and pseudo-supercapacitor, is presented.
Abstract: Supercapacitors (SCs) have received much interest due to their enhanced electrochemical performance, superior cycling life, excellent specific power, and fast charging–discharging rate. The energy density of SCs is comparable to batteries; however, their power density and cyclability are higher by several orders of magnitude relative to batteries, making them a flexible and compromising energy storage alternative, provided a proper design and efficient materials are used. This review emphasizes various types of SCs, such as electrochemical double-layer capacitors, hybrid supercapacitors, and pseudo-supercapacitors. Furthermore, various synthesis strategies, including sol-gel, electro-polymerization, hydrothermal, co-precipitation, chemical vapor deposition, direct coating, vacuum filtration, de-alloying, microwave auxiliary, in situ polymerization, electro-spinning, silar, carbonization, dipping, and drying methods, are discussed. Furthermore, various functionalizations of SC electrode materials are summarized. In addition to their potential applications, brief insights into the recent advances and associated problems are provided, along with conclusions. This review is a noteworthy addition because of its simplicity and conciseness with regard to SCs, which can be helpful for researchers who are not directly involved in electrochemical energy storage.

71 citations


Cited by
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01 Jan 2007
TL;DR: The Third edition of the Kirk-Othmer encyclopedia of chemical technology as mentioned in this paper was published in 1989, with the title "Kirk's Encyclopedia of Chemical Technology: Chemical Technology".
Abstract: 介绍了Kirk—Othmer Encyclopedia of Chemical Technology(化工技术百科全书)(第五版)电子图书网络版数据库,并对该数据库使用方法和检索途径作出了说明,且结合实例简单地介绍了该数据库的检索方法。

2,666 citations

Journal ArticleDOI
TL;DR: In this paper, the authors provide an overview of the electrospinning (applied electric field, distance between the needle and collector and flow rate, needle diameter), solution (polymer concentration, viscosity, solvent and solution conductivity) and environmental (relativity humidity and temperature) parameters that affect the nanofibers fabrication.

1,071 citations

Journal ArticleDOI
TL;DR: A general overview of the characteristics and properties of the materials applied for enzyme immobilization can be found in this article, where support materials are divided into two main groups, called Classic and New materials.
Abstract: In recent years, enzyme immobilization has been presented as a powerful tool for the improvement of enzyme properties such as stability and reusability. However, the type of support material used plays a crucial role in the immobilization process due to the strong effect of these materials on the properties of the produced catalytic system. A large variety of inorganic and organic as well as hybrid and composite materials may be used as stable and efficient supports for biocatalysts. This review provides a general overview of the characteristics and properties of the materials applied for enzyme immobilization. For the purposes of this literature study, support materials are divided into two main groups, called Classic and New materials. The review will be useful in selection of appropriate support materials with tailored properties for the production of highly effective biocatalytic systems for use in various processes.

580 citations