The development of materials based on renewable resources with enhanced mechanical and physicochemical properties is hampered by the abundance of hydrophilic groups because of their structural instability. Bio-inspired from the strong adhesion ability of mussel proteins, renewable and robust soy-based composite films were fabricated from two soybean-derived industrial materials: soluble soybean polysaccharide (SSPS) and catechol-functionalized soy protein isolate (SPI-CH). The conjugation of SPI with multiple catechol moieties as a versatile adhesive component for SSPS matrix efficiently improved the interfacial adhesion between each segment of biopolymer. The biomimetic adherent catechol moieties were successfully bonded in the polymeric n...
In this study, bromelain was used to break soy protein molecules into polypeptide chains, and trigly...
This study aimed to improve the bonding strength and water resistance of soy protein-based adhesives...
In nature, phenolic biopolymers are utilized as functional tools and molecular crosslinkers to contr...
A novel and facile marine mussel-inspired surface modification approach for microcrystalline cellulo...
Development of nonformaldehyde biobased adhesives composed of renewable and low-cost biomass protein...
Doctor of PhilosophyDepartment of Grain Science and IndustryXiuzhi Susan SunSoy protein is one of th...
Biopolymers found in nature are complex molecules that adopt precise and definite shapes and structu...
All-biomass soy protein-based films were prepared using soy protein isolate (SPI), glycerol, hydroxy...
The modification of soy protein isolate (SPI) with different amounts of a naturally occurring cross-...
International audienceAmong natural biopolymers, polysaccharides and proteins are very promising for...
Amino acid-based poly(ester urea) (PEU) copolymers functionalized with pendant catechol groups that...
The adhesive nature of mussels arises from the catechol moiety in the 3,4-dihydroxyphenylalanine (DO...
Marine mussels secret protein-based adhesives, which enable them to anchor to various surfaces in a ...
Nature has developed materials that are integrated and effective at controlling their properties of ...
Soy protein is one of the most abundant plant protein in nature. Despite numerous studies on soy pro...
In this study, bromelain was used to break soy protein molecules into polypeptide chains, and trigly...
This study aimed to improve the bonding strength and water resistance of soy protein-based adhesives...
In nature, phenolic biopolymers are utilized as functional tools and molecular crosslinkers to contr...
A novel and facile marine mussel-inspired surface modification approach for microcrystalline cellulo...
Development of nonformaldehyde biobased adhesives composed of renewable and low-cost biomass protein...
Doctor of PhilosophyDepartment of Grain Science and IndustryXiuzhi Susan SunSoy protein is one of th...
Biopolymers found in nature are complex molecules that adopt precise and definite shapes and structu...
All-biomass soy protein-based films were prepared using soy protein isolate (SPI), glycerol, hydroxy...
The modification of soy protein isolate (SPI) with different amounts of a naturally occurring cross-...
International audienceAmong natural biopolymers, polysaccharides and proteins are very promising for...
Amino acid-based poly(ester urea) (PEU) copolymers functionalized with pendant catechol groups that...
The adhesive nature of mussels arises from the catechol moiety in the 3,4-dihydroxyphenylalanine (DO...
Marine mussels secret protein-based adhesives, which enable them to anchor to various surfaces in a ...
Nature has developed materials that are integrated and effective at controlling their properties of ...
Soy protein is one of the most abundant plant protein in nature. Despite numerous studies on soy pro...
In this study, bromelain was used to break soy protein molecules into polypeptide chains, and trigly...
This study aimed to improve the bonding strength and water resistance of soy protein-based adhesives...
In nature, phenolic biopolymers are utilized as functional tools and molecular crosslinkers to contr...