In this study an antifungal pharmaceutical agent, terbinafine, was microencapsulated by using in situ polymerization. The polymerization was carried out at four mole ratio level and preparations were applied to the 100% cotton fabric. X-ray diffractometry, DSC, FTIR, BET, contact angle measurements, particle size distribution and imaging techniques were performed. Best results were obtained in the case of 8:1 mole ratio. Strength of microcapsule applied fabrics to washing and fungus were also determined. After 25 washing cycle, microcapsules were still in the fabric and had antifungal properties against A. niger. Antifungal strength against T. rubrum was observed up to 15 washing cycles. © 2010 Wiley Periodicals, Inc
351-354Antimicrobial finish has been imparted to the cotton fabric using extracts of neem and Mexica...
The aim of this work was to study the production of comfortable cotton plain-weave fabrics with anti...
Fragrant and antimicrobial properties were conferred to cotton fabrics following microencapsulation ...
In this study an antifungal pharmaceutical agent, terbinafine, was microencapsulated by using in sit...
WOS: 000345192400017The aim of the study was to investigate inclusion complex formation of terbinafi...
In this study two antifungal pharmaceutical agents, terbinafine and ketoconazole, were microencapsul...
In this study two antifungal pharmaceutical agents, terbinafine and ketoconazole, were microencapsul...
The review provides an overview of research findings on microencapsulation for functional textile co...
AbstractObjectiveTo explore the antimicrobial activity of microcapsules encapsulated with mixture of...
The aim of this work is to develop functional textile materials with antimicrobial properties. For t...
Tekstil bitim işlemleri tekstillere uygulanan son yaş işlemdir. Bu yüzden tüketicinin güç tutuşurluk...
Microencapsulation, a technique that allows liquid or solid agents, such as drugs, proteins, cosmeti...
The review provides an overview of research findings on microencapsulation for functional textile co...
Fragrant and antimicrobial properties were conferred to cotton fabrics following microencapsulation ...
The industrial interest for microencapsulation techniques to produce innovative materials has increa...
351-354Antimicrobial finish has been imparted to the cotton fabric using extracts of neem and Mexica...
The aim of this work was to study the production of comfortable cotton plain-weave fabrics with anti...
Fragrant and antimicrobial properties were conferred to cotton fabrics following microencapsulation ...
In this study an antifungal pharmaceutical agent, terbinafine, was microencapsulated by using in sit...
WOS: 000345192400017The aim of the study was to investigate inclusion complex formation of terbinafi...
In this study two antifungal pharmaceutical agents, terbinafine and ketoconazole, were microencapsul...
In this study two antifungal pharmaceutical agents, terbinafine and ketoconazole, were microencapsul...
The review provides an overview of research findings on microencapsulation for functional textile co...
AbstractObjectiveTo explore the antimicrobial activity of microcapsules encapsulated with mixture of...
The aim of this work is to develop functional textile materials with antimicrobial properties. For t...
Tekstil bitim işlemleri tekstillere uygulanan son yaş işlemdir. Bu yüzden tüketicinin güç tutuşurluk...
Microencapsulation, a technique that allows liquid or solid agents, such as drugs, proteins, cosmeti...
The review provides an overview of research findings on microencapsulation for functional textile co...
Fragrant and antimicrobial properties were conferred to cotton fabrics following microencapsulation ...
The industrial interest for microencapsulation techniques to produce innovative materials has increa...
351-354Antimicrobial finish has been imparted to the cotton fabric using extracts of neem and Mexica...
The aim of this work was to study the production of comfortable cotton plain-weave fabrics with anti...
Fragrant and antimicrobial properties were conferred to cotton fabrics following microencapsulation ...