TY - JOUR
T1 - UV-Catalytic Preparation of Polypyrrole Nanoparticles Induced by H2O2
AU - Zhang, Shihu
AU - Zhu, Kaiming
AU - Lv, Guowei
AU - Wang, Guolong
AU - Yu, Demei
AU - Shao, Jinyou
N1 - Publisher Copyright:
© 2015 American Chemical Society.
PY - 2015/7/21
Y1 - 2015/7/21
N2 - As a green oxidant, H2O2 can be used to induce the polymerization of pyrrole. This approach avoids the issue of metal residue in the polymer caused by metal oxidants, whereas the reaction efficiency is low and the corresponding reaction mechanism not clear. In this study, uniform polypyrrole (PPy) nanoparticles were prepared using H2O2 as an oxidant under UV irradiation in the presence of polyvinylpyrrolidone (PVP). The morphology characterization indicated that the spherical PPy nanoparticles were capped by a PVP shell. Through the investigation of reaction process, it was found that the photolysis of H2O2 led to the formation of hydroxyl radicals, which then initiated the oxidative polymerization of pyrrole. The coalescence of small PPy particles formed nanoparticles which were stabilized by PVP. The effects of several reaction conditions on the polymerization rate and the size distribution of nanoparticles were investigated in detail, including radiation intensity (0-30 W), temperature (0-50 °C), and the concentrations of PVP (5-20 g/L), H2O2 (0.06-0.6 M), H2SO4 (0-0.22 M), and the monomer pyrrole (0.03-0.2 M), respectively. UV-catalytic preparation of PPy nanoparticles induced by H2O2 is an effective and environmentally friendly approach, which could be expected to be extended to other conductive polymers.
AB - As a green oxidant, H2O2 can be used to induce the polymerization of pyrrole. This approach avoids the issue of metal residue in the polymer caused by metal oxidants, whereas the reaction efficiency is low and the corresponding reaction mechanism not clear. In this study, uniform polypyrrole (PPy) nanoparticles were prepared using H2O2 as an oxidant under UV irradiation in the presence of polyvinylpyrrolidone (PVP). The morphology characterization indicated that the spherical PPy nanoparticles were capped by a PVP shell. Through the investigation of reaction process, it was found that the photolysis of H2O2 led to the formation of hydroxyl radicals, which then initiated the oxidative polymerization of pyrrole. The coalescence of small PPy particles formed nanoparticles which were stabilized by PVP. The effects of several reaction conditions on the polymerization rate and the size distribution of nanoparticles were investigated in detail, including radiation intensity (0-30 W), temperature (0-50 °C), and the concentrations of PVP (5-20 g/L), H2O2 (0.06-0.6 M), H2SO4 (0-0.22 M), and the monomer pyrrole (0.03-0.2 M), respectively. UV-catalytic preparation of PPy nanoparticles induced by H2O2 is an effective and environmentally friendly approach, which could be expected to be extended to other conductive polymers.
UR - https://www.scopus.com/pages/publications/84939184251
U2 - 10.1021/acs.jpcc.5b03883
DO - 10.1021/acs.jpcc.5b03883
M3 - 文章
AN - SCOPUS:84939184251
SN - 1932-7447
VL - 119
SP - 18707
EP - 18718
JO - Journal of Physical Chemistry C
JF - Journal of Physical Chemistry C
IS - 32
ER -