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Öğe Current advancements in chitosan-based film production for food technology; A review(Elsevier Science Bv., 2019) Mujtaba, Muhammad; Morsi, Rania Elsayed; Kerch, Garry M.; Elsabee, Maher Zaki; Kaya, Murat; Labidi, Jalel; Khawar, Khalid MahmoodChitosan is obtained from chitin, which could be considered to be the most abundant polymer after cellulose. Owing to these properties, chitosan alone or chitosan-based composite film production is attaining huge attention in terms of applications from researchers and industrialists coming from divergent fields. To enhance the biological (mainly antimicrobial and antioxidant) and physiological (mainly mechanical, thermal and barrier) attributes of the chitosan-based films, a vast medley of plant extracts and supporting polymers has been blended into chitosan films. Considering the up to date literature reports based on chitosan film production and applications, it can be stated that still, the research ratio is low in this field. Chitosan blend/composite films with specific properties (superhydrophobicity, excellent mechanical strength, acceptable barrier properties) can be produced only for specific applications in food technology. In the current review, we tried to summarize the advancements made in the last 5-7 years in the field of chitosan film technology for its application in the food industry.Öğe A faunistic survey of bdelloid rotifers in Turkey(Max Kasparek Verlag, 2009) Kaya, Murat; Herniou, Elisabeth A.; Barraclough, Timothy G.; Fontaneto, DiegoMost of the taxonomic and faunistic work on bdelloid rotifers has been carried out inÖğe Molecular imprinting applications in forensic science(MDPI AG, 2017) Yılmaz, Erkut; Garipcan, Bora; Patra, Hirak Kumar; Uzun, LokmanProducing molecular imprinting-based materials has received increasing attention due to recognition selectivity, stability, cast effectiveness, and ease of production in various forms for a wide range of applications. The molecular imprinting technique has a variety of applications in the areas of the food industry, environmental monitoring, and medicine for diverse purposes like sample pretreatment, sensing, and separation/purification. A versatile usage, stability and recognition capabilities also make them perfect candidates for use in forensic sciences. Forensic science is a demanding area and there is a growing interest in molecularly imprinted polymers (MIPs) in this field. In this review, recent molecular imprinting applications in the related areas of forensic sciences are discussed while considering the literature of last two decades. Not only direct forensic applications but also studies of possible forensic value were taken into account like illicit drugs, banned sport drugs, effective toxins and chemical warfare agents in a review of over 100 articles. The literature was classified according to targets, material shapes, production strategies, detection method, and instrumentation. We aimed to summarize the current applications of MIPs in forensic science and put forth a projection of their potential uses as promising alternatives for benchmark competitors.