Nanostructured cellulose was successfully prepared from native cellulose using a homogeneous catalytic H2SO4 hydrolysis pathway in the presence of Cr(III)- and Mn(II)-transition metal salts as the co-catalyst. The effect of transition metal salts with different valence states (Cr3+ and Mn2+) on the physicochemical properties (chemical characteristics, crystallinity index, nano-structure, thermal stability, and morphology) of prepared nanocellulose was investigated. Interestingly, TEM micrographs showed that the Cr(III)-treated and Mn(II)-treated nanocellulose exhibited a web-like nanostructured-surface with average diameters of 44.7 ± 13.2 nm and 58.4 ± 15.3 nm, respectively. XRD study revealed that the crystallinity of nanocellulose was in...
International audienceResearch on nanocellulose has significantly increased over the past few decade...
Hydrolyzing the amorphous region while keeping the crystalline region unaltered is the key technolog...
Hydrolyzing the amorphous region while keeping the crystalline region unaltered is the key technolog...
Nanocellulose is an interesting and renewable material in the nanotechnology field. It can be prepar...
Nanocellulose was successfully prepared from microcrystalline cellulose (MCC) via nickel salt-cataly...
This study reported on the feasibility and practicability of Cr(NO3)3 hydrolysis to isolate cellulos...
This study reported on the feasibility and practicability of Cr(NO3)3 hydrolysis to isolate cellulos...
This study reported on the feasibility and practicability of Cr(NO3)3 hydrolysis to isolate cellulos...
The preparation of nanocellulose via Cr(NO3)3-assisted sulfuric acid hydrolysis was optimized using ...
High crystallinity cellulose nanocrystals (CNCs) were successfully prepared from microcrystalline ce...
The traditional method to isolate cellulose nanocrystals (CNCs) is to subject cellulosic materials t...
Nanocellulose, typically cellulose nanocrystals (CNCs), has excellent properties and is widely used....
This study developed a novel method for the facile and efficient preparation of the cellulose nanocr...
International audienceResearch on nanocellulose has significantly increased over the past few decade...
Heteropoly acid (HPA) and its acidic salts have been widely applied as catalysts for various types o...
International audienceResearch on nanocellulose has significantly increased over the past few decade...
Hydrolyzing the amorphous region while keeping the crystalline region unaltered is the key technolog...
Hydrolyzing the amorphous region while keeping the crystalline region unaltered is the key technolog...
Nanocellulose is an interesting and renewable material in the nanotechnology field. It can be prepar...
Nanocellulose was successfully prepared from microcrystalline cellulose (MCC) via nickel salt-cataly...
This study reported on the feasibility and practicability of Cr(NO3)3 hydrolysis to isolate cellulos...
This study reported on the feasibility and practicability of Cr(NO3)3 hydrolysis to isolate cellulos...
This study reported on the feasibility and practicability of Cr(NO3)3 hydrolysis to isolate cellulos...
The preparation of nanocellulose via Cr(NO3)3-assisted sulfuric acid hydrolysis was optimized using ...
High crystallinity cellulose nanocrystals (CNCs) were successfully prepared from microcrystalline ce...
The traditional method to isolate cellulose nanocrystals (CNCs) is to subject cellulosic materials t...
Nanocellulose, typically cellulose nanocrystals (CNCs), has excellent properties and is widely used....
This study developed a novel method for the facile and efficient preparation of the cellulose nanocr...
International audienceResearch on nanocellulose has significantly increased over the past few decade...
Heteropoly acid (HPA) and its acidic salts have been widely applied as catalysts for various types o...
International audienceResearch on nanocellulose has significantly increased over the past few decade...
Hydrolyzing the amorphous region while keeping the crystalline region unaltered is the key technolog...
Hydrolyzing the amorphous region while keeping the crystalline region unaltered is the key technolog...