© 2016 American Chemical Society. The paper describes the synthesis of multifunctional cellulose derivatives (MCDs) containing a fluorescent and a cationic moiety and their application in the functionalization of pulp fibers. The cellulose derivatives, namely N-(3-propanoic acid)-and N-(4-butanoic acid)-1,8-naphthalimide esters of cellulose, differed in the degree of substitution (DS) and by the aliphatic chain connecting naphthalimide photoactive groups to the polymer backbone. The derivatives were decorated with a cationic moiety, namely (3-carboxypropyl)trimethylammonium chloride. The fluorescent pulp fibers were prepared by direct self-assembly of the water-soluble fluorescent MCDs on the fibers in water at room temperature. The results...
Topochemical engineering is a method of designing the fractionation (disassembly) and fabrication (a...
Multifunctional cellulose membranes were developed from A4-sized printing paper via chemical modific...
Cellulose nanofibrils (CNFs) are nanoscale fibers of high aspect ratio that can be isolated from a w...
Majority of current textile fibres are produced from oil-based raw materials and thus have a role in...
Cellulose, an abundant and renewable material, that can be utilized as a nanomaterial as well as mac...
Cellulose, an abundant and renewable material, that can be utilized as a nanomaterial as well as mac...
Cellulose-based materials are very attractive for emerging bioeconomy as they are renewable, inexpen...
Polysaccharides are the most abundant biopolymers produced in nature and belong, together with prote...
We have chemically modified cellulose nanofibrils (CNF) with furan and maleimide groups, and selecti...
Polysaccharides are the most abundant biopolymers produced in nature and belong, together with prote...
International audienceThe market for cellulose derivatives is currently growing, of course because o...
Native cellulose nanofibers are functionalized using luminescent metal nanoclusters to form a novel ...
International audienceThe market for cellulose derivatives is currently growing, of course because o...
International audienceThe market for cellulose derivatives is currently growing, of course because o...
International audienceThe market for cellulose derivatives is currently growing, of course because o...
Topochemical engineering is a method of designing the fractionation (disassembly) and fabrication (a...
Multifunctional cellulose membranes were developed from A4-sized printing paper via chemical modific...
Cellulose nanofibrils (CNFs) are nanoscale fibers of high aspect ratio that can be isolated from a w...
Majority of current textile fibres are produced from oil-based raw materials and thus have a role in...
Cellulose, an abundant and renewable material, that can be utilized as a nanomaterial as well as mac...
Cellulose, an abundant and renewable material, that can be utilized as a nanomaterial as well as mac...
Cellulose-based materials are very attractive for emerging bioeconomy as they are renewable, inexpen...
Polysaccharides are the most abundant biopolymers produced in nature and belong, together with prote...
We have chemically modified cellulose nanofibrils (CNF) with furan and maleimide groups, and selecti...
Polysaccharides are the most abundant biopolymers produced in nature and belong, together with prote...
International audienceThe market for cellulose derivatives is currently growing, of course because o...
Native cellulose nanofibers are functionalized using luminescent metal nanoclusters to form a novel ...
International audienceThe market for cellulose derivatives is currently growing, of course because o...
International audienceThe market for cellulose derivatives is currently growing, of course because o...
International audienceThe market for cellulose derivatives is currently growing, of course because o...
Topochemical engineering is a method of designing the fractionation (disassembly) and fabrication (a...
Multifunctional cellulose membranes were developed from A4-sized printing paper via chemical modific...
Cellulose nanofibrils (CNFs) are nanoscale fibers of high aspect ratio that can be isolated from a w...