TY - JOUR
T1 - Strong interaction between Au nanoparticles and porous polyurethane sponge enables efficient environmental catalysis with high reusability
AU - Jin, Qijie
AU - Ma, Lei
AU - Zhou, Wan
AU - Chintalapalle, Ramana
AU - Shen, Yuesong
AU - Li, Xiu Jun
N1 - Publisher Copyright:
© 2020 Elsevier B.V.
PY - 2020/12/1
Y1 - 2020/12/1
N2 - A novel and recoverable platform of polyurethane (PU) sponge-supported Au nanoparticle catalyst was obtained by a water-based in-situ preparation process. The structure, chemical, and morphology properties of this platform were characterized by XRD, TGA, SEM, FT-IR, and XPS. The Au/PU sponge platform exhibited excellent catalytic performances in catalytic reductions of p-nitrophenol and o-nitroaniline at room temperature, and both catalytic reactions could be completed within 4.5 and 1.5 min, respectively. Furthermore, the strong interaction between Au nanoparticles and the PU sponge enabled the catalyst system to maintain a high catalytic efficiency after 5 recycling times, since the PU sponge reduced the trend of leaching and aggregation of Au nanoparticles. The unique nature of Au nanoparticles and the porous PU sponge along with their strong interaction resulted in a highly efficient, recoverable, and cost-effective multifunctional catalyst. The AuNP/Sponge nanocatalyst platform has great potential for wide environmental and other catalytic applications.
AB - A novel and recoverable platform of polyurethane (PU) sponge-supported Au nanoparticle catalyst was obtained by a water-based in-situ preparation process. The structure, chemical, and morphology properties of this platform were characterized by XRD, TGA, SEM, FT-IR, and XPS. The Au/PU sponge platform exhibited excellent catalytic performances in catalytic reductions of p-nitrophenol and o-nitroaniline at room temperature, and both catalytic reactions could be completed within 4.5 and 1.5 min, respectively. Furthermore, the strong interaction between Au nanoparticles and the PU sponge enabled the catalyst system to maintain a high catalytic efficiency after 5 recycling times, since the PU sponge reduced the trend of leaching and aggregation of Au nanoparticles. The unique nature of Au nanoparticles and the porous PU sponge along with their strong interaction resulted in a highly efficient, recoverable, and cost-effective multifunctional catalyst. The AuNP/Sponge nanocatalyst platform has great potential for wide environmental and other catalytic applications.
KW - Au nanoparticles
KW - Catalysis reduction
KW - Environmental degradation
KW - Nitroaromatic compounds
KW - Polyurethane sponge
UR - http://www.scopus.com/inward/record.url?scp=85078261322&partnerID=8YFLogxK
U2 - 10.1016/j.cattod.2020.01.023
DO - 10.1016/j.cattod.2020.01.023
M3 - 文章
AN - SCOPUS:85078261322
SN - 0920-5861
VL - 358
SP - 246
EP - 253
JO - Catalysis Today
JF - Catalysis Today
ER -