Abstract BACKGROUND Water reclamation in the textile industry is essential to reduce environmental impacts associated with high water consumption and pollutant discharge. Among emerging technologies, pervaporation (PV) has gained attention due to its high selectivity and efficiency in contaminant removal. However, there is still a lack of comprehensive
Miriam Albara +3 more
wiley +1 more source
Bio decolorization of the oil soluble azo dye toluidine Red by Halomonas strain A3. [PDF]
Moharrery L, Ardestani NS, Otadi M.
europepmc +1 more source
Key Molecular Parameters of PEI for Efficient DNA Delivery Into HEK293T Cells
Graphical representation of the formation and organization of PEI/eGPF‐C3 polyplexes and their relationship with intracellular plasmid accumulation and transfection efficiency in HEK293T cells. The data suggest that the hierarchical organization of b‐PEI25 polyplexes may contribute to enhanced intracellular plasmid accumulation and gene expression ...
Paulina Alejandra Montaño González +11 more
wiley +1 more source
Chitosan coated cotton fabric embedded with silver nanoparticles for azo dye degradation in aqueous solutions. [PDF]
Bibi H, Khan AA, Lee IE, Wali Q.
europepmc +1 more source
A Review on Green Synthetic Approaches in the Development of Quinoline Analogues
This review highlights recent advances in environmentally friendly approaches, including metal‐free systems, solvent‐free approaches, microwave, and ultrasonic‐assisted techniques, organo‐ and biocatalysis, ionic liquids, nanoparticle catalysis, electrochemical, and photocatalytic strategies for the synthesis of quinoline scaffolds.
Demis Zelelew +3 more
wiley +1 more source
Employment of chia gum and tannic acid as natural products in immobilization of horseradish peroxidase for the removal of azo dye. [PDF]
Abdel-Aty AM +3 more
europepmc +1 more source
Estimation of Azo Groups in Azo Dyes
OKUBO, Ichiro, NIKI, Toshisuke
openaire +2 more sources
Sammelhandschrift: Azo von Bologna
SAMMELHANDSCHRIFT: AZO VON BOLOGNA Sammelhandschrift: Azo von Bologna ( - ) Cover ( - ) Blank page ( - ) Azo: Summa ad Codicis libros I-IX (1r) Liber i (1r) Liber ii (25r) Liber iii (33r ...
Azo, Porcius
core
Triphenylphosphonium Functionalization Enables Efficient Mitochondrial Targeting of HPMA Copolymers
Triphenylphosphonium functionalization transforms water‐soluble HPMA copolymers into highly efficient mitochondria‐targeted drug delivery systems. A clear structure–activity relationship outlines how polymer internalization and mitochondrial targeting are driven by both TPP valency and cellular bioenergetics.
Lenka Kotrchová +6 more
wiley +1 more source
A green approach to Azo dye C.I. Disperse blue 291 treatment: mitigating ecotoxicological effects through enzymatic and adsorptive strategies using endophytic fungi. [PDF]
Chibite EEA +9 more
europepmc +1 more source

