Two bis(diaryldiazomethane)s substituted with amino groups are synthesized and used for the surface modification of membranes electrospun from gelatin. These membranes are then reacted with tolylene-2,4-diisocyanate to give urea-functionalized materials, so that hydrogen peroxide can be reversibly bound onto their surface. These membranes are characterized by scanning electron microscopy, XPS, differential scanning calorimeter, and tensile test to show their surface properties and bulk properties. The surface modification with amino-substituted diazomethanes and the subsequent cross-linking reaction with diisocyanates contribute to high loadings of hydrogen peroxide, and greatly increase the antibacterial activity of gelatin-derived membran...
In the present work, the immobilization of gelatin as biopolymer on two types of implantable biomate...
In the present work, the immobilization of gelatin as biopolymer on two types of implantable biomate...
Gelatin is one of the most prominent biopolymers in biomedical material research and development. It...
Two bis(diaryldiazomethane)s substituted with amino groups are synthesized and used for the surface ...
A bis(diaryldiazomethane) substituted with amino groups was synthesized and used for the surface mod...
By covalently immobilizing imidazolium ion onto molecular chain, functional polyurethane (PU) is fab...
The electrospinning of gelatin aqueous Solution Was successfully carried Out by elevating the spinni...
Antibiotic resistance continues to pose a social burden and a global challenge in the treatment of i...
A major goal of biomimetics is the development of chemical compositions and structures that simulate...
For guided tissue regeneration (GTR) membrane, synchronization of the membrane biodegradation rate a...
Gelatin has many superior biological properties and can absorb a large volume of water to form hydro...
Electrospun membranes have been widely used as scaffolds for soft tissue engineering due to their ex...
In this study, polyurethane urea was surface-modified to elevate cell recognition through immobiliza...
Urinary catheters expose patients to a high risk of acquiring nosocomial infections. To prevent this...
Surface modification becomes an effective tool for improvement of both flux and selectivity of membr...
In the present work, the immobilization of gelatin as biopolymer on two types of implantable biomate...
In the present work, the immobilization of gelatin as biopolymer on two types of implantable biomate...
Gelatin is one of the most prominent biopolymers in biomedical material research and development. It...
Two bis(diaryldiazomethane)s substituted with amino groups are synthesized and used for the surface ...
A bis(diaryldiazomethane) substituted with amino groups was synthesized and used for the surface mod...
By covalently immobilizing imidazolium ion onto molecular chain, functional polyurethane (PU) is fab...
The electrospinning of gelatin aqueous Solution Was successfully carried Out by elevating the spinni...
Antibiotic resistance continues to pose a social burden and a global challenge in the treatment of i...
A major goal of biomimetics is the development of chemical compositions and structures that simulate...
For guided tissue regeneration (GTR) membrane, synchronization of the membrane biodegradation rate a...
Gelatin has many superior biological properties and can absorb a large volume of water to form hydro...
Electrospun membranes have been widely used as scaffolds for soft tissue engineering due to their ex...
In this study, polyurethane urea was surface-modified to elevate cell recognition through immobiliza...
Urinary catheters expose patients to a high risk of acquiring nosocomial infections. To prevent this...
Surface modification becomes an effective tool for improvement of both flux and selectivity of membr...
In the present work, the immobilization of gelatin as biopolymer on two types of implantable biomate...
In the present work, the immobilization of gelatin as biopolymer on two types of implantable biomate...
Gelatin is one of the most prominent biopolymers in biomedical material research and development. It...