Shishov et al., 2013 - Google Patents
Self-organization of polyaniline during oxidative polymerization: formation of granular structureShishov et al., 2013
View PDF- Document ID
- 17592821949033620173
- Author
- Shishov M
- Moshnikov V
- Sapurina I
- Publication year
- Publication venue
- Chemical Papers
External Links
Snippet
The paper is focused on oxidative polymerization of aniline proceeding in an acid medium with a strong oxidant; formation of polyaniline (PANI) granular structures in different steps of the synthesis was studied. The relationship between the processes of self-organization of …
- 229920000767 polyaniline 0 title abstract description 79
Similar Documents
Publication | Publication Date | Title |
---|---|---|
Shishov et al. | Self-organization of polyaniline during oxidative polymerization: formation of granular structure | |
Trchová et al. | Resonance Raman spectroscopy of conducting polypyrrole nanotubes: disordered surface versus ordered body | |
Du et al. | Novel solid-state and template-free synthesis of branched polyaniline nanofibers | |
Zhang et al. | Structural characteristics of polyaniline nanotubes synthesized from different buffer solutions | |
Sapurina et al. | Oxidative polymerization of aniline: molecular synthesis of polyaniline and the formation of supramolecular structures | |
Yu et al. | Facile synthesis of polyaniline− sodium alginate nanofibers | |
Zujovic et al. | Role of aniline oligomeric nanosheets in the formation of polyaniline nanotubes | |
Zhang et al. | Synthesis and applications of one-dimensional nano-structured polyaniline: An overview | |
Tran et al. | Toward an understanding of the formation of conducting polymer nanofibers | |
Liao et al. | Sulfonated polyaniline nanostructures synthesized via rapid initiated copolymerization with controllable morphology, size, and electrical properties | |
Trchová et al. | Evolution of polyaniline nanotubes: the oxidation of aniline in water | |
Zhou et al. | Synthesis of polyaniline hierarchical structures in a dilute SDS/HCl solution: nanostructure-covered rectangular tubes | |
McCarthy et al. | Synthesis and characterization of water-soluble chiral conducting polymer nanocomposites | |
Ciric-Marjanovic et al. | Synthesis and characterization of self-assembled polyaniline nanotubes/silica nanocomposites | |
Rahy et al. | Polyaniline nanofiber synthesis by co-use of ammonium peroxydisulfate and sodium hypochlorite | |
Bian et al. | Synthesis of conducting polyaniline/TiO2 composite nanofibres by one‐step in situ polymerization method | |
Zhang et al. | Characterization of polyaniline nanotubes formed in the presence of amino acids | |
Mu et al. | Spectral characteristics of polyaniline nanostructures synthesized by using cyclic voltammetry at different scan rates | |
Radoičić et al. | Ferromagnetic polyaniline/TiO2 nanocomposites | |
US20160148715A1 (en) | Conductive cellulose nanocrystals, method of producing same and uses thereof | |
Lu et al. | Synthesis of submicron PEDOT particles of high electrical conductivity via continuous aerosol vapor polymerization | |
Zhang et al. | Synthesis of uniform polyaniline nanosheets and nanotubes: Dependence of morphology on the pH | |
Li et al. | Productive Synthesis and Properties of Polydiaminoanthraquinone and Its Pure Self‐Stabilized Nanoparticles with Widely Adjustable Electroconductivity | |
Shi et al. | The pH-controlled morphology transition of polyaniline from nanofibers to nanospheres | |
Waghmode et al. | Studies on morphology of polyaniline films formed at liquid–liquid and solid–liquid interfaces at 25 and 5 C, respectively, and effect of doping |