WOS: 000352332700002PubMed: 25597430In this study a new morphology of chitin, which could find wide applications in the fields of medicine, pharmacy, agriculture, food and textiles, has been described. The chitin was isolated from the wings of Periplaneta americana employing a conventional method. Considering chitin isolation studies conducted previously, chitin has three surface morphologies, which are (1) hard and rough surface without pores or nanofibers, (2) surface solely composed of nanofibers and (3) surfaces with both pores and nanofibers. In this study, the surface of the chitin, examined with environmental scanning electron microscopy (ESEM), only has oval nanopores (230-510 nm) without nanofibers, and this is different from the a...
WOS: 000361184900002PubMed: 26256318It is well known that physicochemical properties of chitin are r...
eISSN 1432-234XThe chitin structures of two common European species belonging to Insecta (Melolontha...
Chitin is the most abundant structural biopolymer after cellulose in terrestrial ecosystems. Until n...
Chitin is widely used in various areas and it is regarded as one of the most important polysaccharid...
In this study, we used Fourier transform infrared spectroscopy (FT-IR), elemental analysis (EA), the...
In previous studies, chitin-based films were produced from chitin nanofibers in dust form and fully ...
WOS: 000396955500019PubMed: 28267493In previous studies, chitin-based films were produced from chiti...
WOS: 000367408300054PubMed: 26277749This study was conducted to understand the differences in the ph...
Currently researchers are isolating chitins from fungal cell walls [1], crustaceans shells [2], inse...
WOS: 000350680700013PubMed: 25635814In this study, we used Fourier transform infrared spectroscopy (...
<div><p>In this study, we used Fourier transform infrared spectroscopy (FT-IR), elemental analysis (...
This study was conducted to understand the differences in the physicochemical properties of chitin s...
This study was conducted to understand the differences in the physicochemical properties of chitin s...
In this study, we used Fourier transform infrared spectroscopy (FT-IR), elemental analysis (EA), the...
WOS: 000340585500003The chitin structures of two common European species belonging to Insecta (Melol...
WOS: 000361184900002PubMed: 26256318It is well known that physicochemical properties of chitin are r...
eISSN 1432-234XThe chitin structures of two common European species belonging to Insecta (Melolontha...
Chitin is the most abundant structural biopolymer after cellulose in terrestrial ecosystems. Until n...
Chitin is widely used in various areas and it is regarded as one of the most important polysaccharid...
In this study, we used Fourier transform infrared spectroscopy (FT-IR), elemental analysis (EA), the...
In previous studies, chitin-based films were produced from chitin nanofibers in dust form and fully ...
WOS: 000396955500019PubMed: 28267493In previous studies, chitin-based films were produced from chiti...
WOS: 000367408300054PubMed: 26277749This study was conducted to understand the differences in the ph...
Currently researchers are isolating chitins from fungal cell walls [1], crustaceans shells [2], inse...
WOS: 000350680700013PubMed: 25635814In this study, we used Fourier transform infrared spectroscopy (...
<div><p>In this study, we used Fourier transform infrared spectroscopy (FT-IR), elemental analysis (...
This study was conducted to understand the differences in the physicochemical properties of chitin s...
This study was conducted to understand the differences in the physicochemical properties of chitin s...
In this study, we used Fourier transform infrared spectroscopy (FT-IR), elemental analysis (EA), the...
WOS: 000340585500003The chitin structures of two common European species belonging to Insecta (Melol...
WOS: 000361184900002PubMed: 26256318It is well known that physicochemical properties of chitin are r...
eISSN 1432-234XThe chitin structures of two common European species belonging to Insecta (Melolontha...
Chitin is the most abundant structural biopolymer after cellulose in terrestrial ecosystems. Until n...