TY - JOUR
T1 - Wrapping Multiwalled Carbon Nanotubes with Anatase Titanium Oxide for the Electrosynthesis of Glycolic Acid
AU - Yang, Jun
AU - Cheng, Junfang
AU - Tao, Jie
AU - Higashi, Manabu
AU - Yamauchi, Miho
AU - Nakashima, Naotoshi
N1 - Publisher Copyright:
© 2019 American Chemical Society.
PY - 2019/10/25
Y1 - 2019/10/25
N2 - The construction of an efficient electrocatalyst is of significant importance for electrochemical devices. In this study, a facile preparation method is developed to wrap pristine multiwalled carbon nanotubes (MWNTs) by an anatase TiO2 layer with the assistance of pyridine-based polybenzimidazole (PyPBI) The factors dominating the morphology of the obtained MWNT/PyPBY/TiO2 products, involving the employment of PyPBI and the post-treatment method, are investigated in detail. Furthermore, a self-standing electrode film is prepared via a filtration route. The electrode film is composed of a MWNT/PyPBI/TiO2 catalyst layer and a MWNT current collecting layer. The resultant electrocatalysts and electrode film with the MWNT/PyPBI/TiO2 catalyst are evaluated for the electroreduction of oxalic acid (OX) to glycolic acid (GC). By using the optimized electrode film with the MWNT/PyPBI/TiO2 catalyst, the conversion rate of OX and the selectivity of GC reach 51.2% and 38.7%, respectively.
AB - The construction of an efficient electrocatalyst is of significant importance for electrochemical devices. In this study, a facile preparation method is developed to wrap pristine multiwalled carbon nanotubes (MWNTs) by an anatase TiO2 layer with the assistance of pyridine-based polybenzimidazole (PyPBI) The factors dominating the morphology of the obtained MWNT/PyPBY/TiO2 products, involving the employment of PyPBI and the post-treatment method, are investigated in detail. Furthermore, a self-standing electrode film is prepared via a filtration route. The electrode film is composed of a MWNT/PyPBI/TiO2 catalyst layer and a MWNT current collecting layer. The resultant electrocatalysts and electrode film with the MWNT/PyPBI/TiO2 catalyst are evaluated for the electroreduction of oxalic acid (OX) to glycolic acid (GC). By using the optimized electrode film with the MWNT/PyPBI/TiO2 catalyst, the conversion rate of OX and the selectivity of GC reach 51.2% and 38.7%, respectively.
KW - anatase TiO
KW - electro-synthesis of glycolic acid
KW - electroreduction of oxalic acid
KW - multiwalled carbon nanotube
KW - polymer-wrapped carbon nanotubes
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U2 - 10.1021/acsanm.9b01357
DO - 10.1021/acsanm.9b01357
M3 - Article
AN - SCOPUS:85074675427
SN - 2574-0970
VL - 2
SP - 6360
EP - 6367
JO - ACS Applied Nano Materials
JF - ACS Applied Nano Materials
IS - 10
ER -