This study describes the preparation of a novel proton conducting membranes based on bacterial cellulose (BC) modified by grafting of 2-acrylamido-2-methyl-1 -propanesulfonic acid (AMPS) through UV-induced graft polymerization. These AMPS-g-BC membranes have been characterized by various techniques including FTIR, SEM and TGA, to find their successful grafting of AMPS on BC, surface morphology and thermal stability, respectively. Physical properties of AMPS-g-BC membranes have been assessed in terms of Lamda value( λ ), ion exchange capacity(IEC) and proton conductivity. The relationship between degree of grafting and AMPS concentration used for grafting has been determined by weight gain method. An optimum proton conductivity equal to 2.89...
The objective of this study is to develop a new type of sustainable membrane with promising characte...
The reaction of p-carboxy phenyl amino maleimide (CHM) with cellulose acetate (CA) led to the format...
In this research, high strength 3D-nano Bacterial Cellulose (BC) framework was utilized to modify Yo...
The development of cheap and efficient proton conducting polymers attracts scientists' attention, re...
In order to synthesize proton-conducting materials which retain acids in the membrane during fuel ce...
Cellulose is a renewable resource that receives attention from researchers due to its potential as a...
Membranes are major components of many water-intensive industrial processes. Fouling, one of membran...
Recent studies have demonstrated the potential of bacterial cellulose (BC) as a substrate for the de...
Bacterial cellulose (BC) with increased hydrophobicity is required for several applications includin...
This work aims to encourage the use of natural materials for advanced energy applications, such as p...
Cellulose nanocrystals (CNC) obtained from waste sawdust were used to modify the polyamide membrane ...
In this article the new proton exchange membranes were prepared from sulfonated polybenzimidazole (s...
International audienceCellulose-containing composites based on copolymers of acrylic acid with styre...
The purpose of the current work was to produce conducting electroactive membranes from bacterial cel...
Poly(isophthalamide) based copolymer, poly(isophthalamide)-graft-methacrylamide (PIPA-g-MAA) has bee...
The objective of this study is to develop a new type of sustainable membrane with promising characte...
The reaction of p-carboxy phenyl amino maleimide (CHM) with cellulose acetate (CA) led to the format...
In this research, high strength 3D-nano Bacterial Cellulose (BC) framework was utilized to modify Yo...
The development of cheap and efficient proton conducting polymers attracts scientists' attention, re...
In order to synthesize proton-conducting materials which retain acids in the membrane during fuel ce...
Cellulose is a renewable resource that receives attention from researchers due to its potential as a...
Membranes are major components of many water-intensive industrial processes. Fouling, one of membran...
Recent studies have demonstrated the potential of bacterial cellulose (BC) as a substrate for the de...
Bacterial cellulose (BC) with increased hydrophobicity is required for several applications includin...
This work aims to encourage the use of natural materials for advanced energy applications, such as p...
Cellulose nanocrystals (CNC) obtained from waste sawdust were used to modify the polyamide membrane ...
In this article the new proton exchange membranes were prepared from sulfonated polybenzimidazole (s...
International audienceCellulose-containing composites based on copolymers of acrylic acid with styre...
The purpose of the current work was to produce conducting electroactive membranes from bacterial cel...
Poly(isophthalamide) based copolymer, poly(isophthalamide)-graft-methacrylamide (PIPA-g-MAA) has bee...
The objective of this study is to develop a new type of sustainable membrane with promising characte...
The reaction of p-carboxy phenyl amino maleimide (CHM) with cellulose acetate (CA) led to the format...
In this research, high strength 3D-nano Bacterial Cellulose (BC) framework was utilized to modify Yo...