Aggregation-induced emission (AIE) active cellulose nanocrystals (TPE-CNCs) were synthesized by attaching tetraphenylethylene (TPE) to cellulose nanocrystals (CNCs). The structure and morphology of TPE-CNCs were characterized by FT-IR, XRD, ζ-potential measurements, elemental analysis, TEM, atomic force microscopy (AFM), and dynamic laser light scattering (DLS). Fluorescent properties of TPE-CNCs were also further studied. Unlike aggregation-caused quenching (ACQ), TPE-CNCs emitted weak fluorescence in the dilute suspensions, while emitting efficiently in the aggregated states. The AIE mechanism of TPE-CNCs was attributed to the restriction of an intramolecular rotation (RIR) process in the aggregated states. TPE-CNCs displayed good di...
International audienceDuring the last two decades, interest in cellulosic nanomaterials has greatly ...
In this communication a method for the creation of fluorescent cellulose nanoparticles using click c...
As the most abundant and renewable biopolymer on earth, cellulose can be functionalized for various ...
Cotton-source cellulose nanocrystals (CNCs) with a range of surface charge densities were fluorescen...
Cellulose nanocrystals (CNCs) have been covalently labeled with both fluorescein and rhodamine and s...
In this work, an aggregation-induced emission (AIE) sensor for the detection of Fe3+ ions was fabric...
A series of fluorescent cellulose derivatives (AC-AET-DMANMs) with different degrees of substitution...
Cellulose nanocrystals (CNCs) represent intriguing biopolymeric nanocrystalline materials, that are ...
Methods to covalently conjugate Alexa Fluor dyes to cellulose nanocrystals, at limiting amounts that...
Nanocrystalline cellulose is rapidly emerging as a promising material due to its impressive mechanic...
Antimicrobial and antiviral materials have attracted significant interest in recent years due to inc...
In this paper, we illustrate an efficient, convenient, and simplistic fluorescence technique for the...
Fluorescent rod-shaped nanoparticles were prepared by attaching hydrazine- or amino-substituted fluo...
The emergence and development of aggregation induced emission (AIE) have attracted worldwide attenti...
The Ph.D. project aims at developing novel fluorescent nanomaterials for fast, sensitive, selective,...
International audienceDuring the last two decades, interest in cellulosic nanomaterials has greatly ...
In this communication a method for the creation of fluorescent cellulose nanoparticles using click c...
As the most abundant and renewable biopolymer on earth, cellulose can be functionalized for various ...
Cotton-source cellulose nanocrystals (CNCs) with a range of surface charge densities were fluorescen...
Cellulose nanocrystals (CNCs) have been covalently labeled with both fluorescein and rhodamine and s...
In this work, an aggregation-induced emission (AIE) sensor for the detection of Fe3+ ions was fabric...
A series of fluorescent cellulose derivatives (AC-AET-DMANMs) with different degrees of substitution...
Cellulose nanocrystals (CNCs) represent intriguing biopolymeric nanocrystalline materials, that are ...
Methods to covalently conjugate Alexa Fluor dyes to cellulose nanocrystals, at limiting amounts that...
Nanocrystalline cellulose is rapidly emerging as a promising material due to its impressive mechanic...
Antimicrobial and antiviral materials have attracted significant interest in recent years due to inc...
In this paper, we illustrate an efficient, convenient, and simplistic fluorescence technique for the...
Fluorescent rod-shaped nanoparticles were prepared by attaching hydrazine- or amino-substituted fluo...
The emergence and development of aggregation induced emission (AIE) have attracted worldwide attenti...
The Ph.D. project aims at developing novel fluorescent nanomaterials for fast, sensitive, selective,...
International audienceDuring the last two decades, interest in cellulosic nanomaterials has greatly ...
In this communication a method for the creation of fluorescent cellulose nanoparticles using click c...
As the most abundant and renewable biopolymer on earth, cellulose can be functionalized for various ...