Constructing Zn-based MOF-MXene nanoarchitectures to stabilize ultrafine Pt nanocrystals with enhanced methanol oxidation performance DOI
Huajie Huang,

Jinlong Qin,

Chen Liu

et al.

Carbon, Journal Year: 2024, Volume and Issue: 226, P. 119171 - 119171

Published: April 22, 2024

Language: Английский

MXene based emerging materials for supercapacitor applications: Recent advances, challenges, and future perspectives DOI

Subhasree Panda,

Kalim Deshmukh,

S. K. Khadheer Pasha

et al.

Coordination Chemistry Reviews, Journal Year: 2022, Volume and Issue: 462, P. 214518 - 214518

Published: March 28, 2022

Language: Английский

Citations

302

La-doped NiFe-LDH coupled with hierarchical vertically aligned MXene frameworks for efficient overall water splitting DOI
Mengzhou Yu, Jiqi Zheng, Ming Guo

et al.

Journal of Energy Chemistry, Journal Year: 2022, Volume and Issue: 70, P. 472 - 479

Published: March 5, 2022

Language: Английский

Citations

140

Pt-on-Pd bimetallic nanodendrites stereoassembled on MXene nanosheets for use as high-efficiency electrocatalysts toward the methanol oxidation reaction DOI Creative Commons
Cuizhen Yang, Quanguo Jiang, Huan Liu

et al.

Journal of Materials Chemistry A, Journal Year: 2021, Volume and Issue: 9(27), P. 15432 - 15440

Published: Jan. 1, 2021

3D porous Pt-on-Pd bimetallic nanodendrites stereoassembled on a 2D Ti3C2Tx MXene matrix possess exceptional electrocatalytic properties toward the methanol oxidation reaction.

Language: Английский

Citations

133

Constructing 3D interweaved MXene/graphitic carbon nitride nanosheets/graphene nanoarchitectures for promoted electrocatalytic hydrogen evolution DOI
Haiyan He, Yuxian Chen, Cuizhen Yang

et al.

Journal of Energy Chemistry, Journal Year: 2021, Volume and Issue: 67, P. 483 - 491

Published: Nov. 10, 2021

Language: Английский

Citations

130

Recent progress in electrocatalytic nitrogen reduction to ammonia (NRR) DOI
Zanling Huang, Madiha Rafiq, Abebe Reda Woldu

et al.

Coordination Chemistry Reviews, Journal Year: 2022, Volume and Issue: 478, P. 214981 - 214981

Published: Dec. 25, 2022

Language: Английский

Citations

127

1D-2D hybridization: Nanoarchitectonics for grain boundary-rich platinum nanowires coupled with MXene nanosheets as efficient methanol oxidation electrocatalysts DOI Creative Commons
Wei Meng, Haiyan He, Lu Yang

et al.

Chemical Engineering Journal, Journal Year: 2022, Volume and Issue: 450, P. 137932 - 137932

Published: July 6, 2022

Language: Английский

Citations

111

Applications of MAX phases and MXenes as catalysts DOI Open Access
Iuliana M. Chirica,

Anca G. Mirea,

Ştefan Neaţu

et al.

Journal of Materials Chemistry A, Journal Year: 2021, Volume and Issue: 9(35), P. 19589 - 19612

Published: Jan. 1, 2021

This review highlights the recent progress in designing MAX phases and MXenes as materials for heterogeneous, non-electrocatalytic, catalytic applications.

Language: Английский

Citations

104

3D interweaving MXene–graphene network–confined Ni–Fe layered double hydroxide nanosheets for enhanced hydrogen evolution DOI

Binfeng Shen,

Huajie Huang, Yi Jiang

et al.

Electrochimica Acta, Journal Year: 2022, Volume and Issue: 407, P. 139913 - 139913

Published: Jan. 14, 2022

Language: Английский

Citations

102

MoS2 quantum dot-decorated MXene nanosheets as efficient hydrogen evolution electrocatalysts DOI
Huajie Huang,

Ya Xue,

Yongshuai Xie

et al.

Inorganic Chemistry Frontiers, Journal Year: 2022, Volume and Issue: 9(6), P. 1171 - 1178

Published: Jan. 1, 2022

A controllable assembly strategy is developed to fabricate 0D MoS 2 quantum dots anchored onto 2D Ti 3 C T x MXene nanosheets, which show exceptional electrocatalytic ability toward the hydrogen evolution reaction.

Language: Английский

Citations

95

Interfacial engineering of worm-shaped palladium nanocrystals anchored on polyelectrolyte-modified MXene nanosheets for highly efficient methanol oxidation DOI
Di Xiao, Quanguo Jiang, Chenyu Xu

et al.

Journal of Colloid and Interface Science, Journal Year: 2022, Volume and Issue: 616, P. 781 - 790

Published: Feb. 24, 2022

Language: Английский

Citations

95