Seuraa
Peng Zhang
Peng Zhang
Vahvistettu sähköpostiosoite verkkotunnuksessa henu.edu.cn
Nimike
Viittaukset
Viittaukset
Vuosi
Advances in the synthesis of 2D MXenes
Y Wei, P Zhang, RA Soomro, Q Zhu, B Xu
Advanced materials 33 (39), 2103148, 2021
8232021
Self‐assembly of transition metal oxide nanostructures on MXene nanosheets for fast and stable lithium storage
YT Liu, P Zhang, N Sun, B Anasori, QZ Zhu, H Liu, Y Gogotsi, B Xu
Advanced Materials 30 (23), 1707334, 2018
6982018
Extended “adsorption–insertion” model: a new insight into the sodium storage mechanism of hard carbons
N Sun, Z Guan, Y Liu, Y Cao, Q Zhu, H Liu, Z Wang, P Zhang, B Xu
Advanced Energy Materials 9 (32), 1901351, 2019
5322019
MXene-bonded activated carbon as a flexible electrode for high-performance supercapacitors
L Yu, L Hu, B Anasori, YT Liu, Q Zhu, P Zhang, Y Gogotsi, B Xu
ACS Energy Letters 3 (7), 1597-1603, 2018
4652018
Flexible 3D porous MXene foam for high‐performance lithium‐ion batteries
Q Zhao, Q Zhu, J Miao, P Zhang, P Wan, L He, B Xu
Small 15 (51), 1904293, 2019
3292019
In situ ice template approach to fabricate 3D flexible MXene film‐based electrode for high performance supercapacitors
P Zhang, Q Zhu, RA Soomro, S He, N Sun, N Qiao, B Xu
Advanced Functional Materials 30 (47), 2000922, 2020
2972020
MXene‐bonded flexible hard carbon film as anode for stable Na/K‐ion storage
N Sun, Q Zhu, B Anasori, P Zhang, H Liu, Y Gogotsi, B Xu
Advanced Functional Materials 29 (51), 1906282, 2019
2842019
3D carbon-coated MXene architectures with high and ultrafast lithium/sodium-ion storage
P Zhang, RA Soomro, Z Guan, N Sun, B Xu
Energy Storage Materials 29, 163-171, 2020
2232020
Progression in the oxidation stability of MXenes
RA Soomro, P Zhang, B Fan, Y Wei, B Xu
Nano-Micro Letters 15 (1), 108, 2023
1632023
MOF-Derived ZnS Nanodots/Ti3C2Tx MXene Hybrids Boosting Superior Lithium Storage Performance
B Cao, H Liu, X Zhang, P Zhang, Q Zhu, H Du, L Wang, R Zhang, B Xu
Nano-micro letters 13, 1-17, 2021
1632021
Electrostatic Self-assembly of 0D–2D SnO2 Quantum Dots/Ti3C2Tx MXene Hybrids as Anode for Lithium-Ion Batteries
H Liu, X Zhang, Y Zhu, B Cao, Q Zhu, P Zhang, B Xu, F Wu, R Chen
Nano-micro letters 11, 1-12, 2019
1572019
2D MXene nanosheets enable small-sulfur electrodes to be flexible for lithium–sulfur batteries
Q Zhao, Q Zhu, J Miao, P Zhang, B Xu
Nanoscale 11 (17), 8442-8448, 2019
1532019
Flexible carbon dots‐intercalated MXene film electrode with outstanding volumetric performance for supercapacitors
P Zhang, J Li, D Yang, RA Soomro, B Xu
Advanced Functional Materials 33 (1), 2209918, 2023
1252023
Self-propagating fabrication of 3D porous MXene-rGO film electrode for high-performance supercapacitors
J Miao, Q Zhu, K Li, P Zhang, Q Zhao, B Xu
Journal of Energy Chemistry 52, 243-250, 2021
1232021
Flexible mxene framework as a fast electron/potassium‐ion dual‐function conductor boosting stable potassium storage in graphite electrodes
B Cao, H Liu, P Zhang, N Sun, B Zheng, Y Li, H Du, B Xu
Advanced Functional Materials 31 (32), 2102126, 2021
1222021
A flexible Si@ C electrode with excellent stability employing an MXene as a multifunctional binder for lithium‐ion batteries
P Zhang, Q Zhu, Z Guan, Q Zhao, N Sun, B Xu
ChemSusChem 13 (6), 1621-1628, 2020
1012020
Plate-to-Layer Bi2MoO6/MXene-Heterostructured Anode for Lithium-Ion Batteries
P Zhang, D Wang, Q Zhu, N Sun, F Fu, B Xu
Nano-micro letters 11, 1-14, 2019
1002019
An MXene/CNTs@ P nanohybrid with stable Ti–O–P bonds for enhanced lithium ion storage
S Zhang, H Liu, B Cao, Q Zhu, P Zhang, X Zhang, R Chen, F Wu, B Xu
Journal of Materials Chemistry A 7 (38), 21766-21773, 2019
1002019
Carbon nanotubes enhance flexible MXene films for high-rate supercapacitors
H Chen, L Yu, Z Lin, Q Zhu, P Zhang, N Qiao, B Xu
Journal of Materials Science 55, 1148-1156, 2020
912020
Fluffy carbon-coated red phosphorus as a highly stable and high-rate anode for lithium-ion batteries
H Liu, S Zhang, Q Zhu, B Cao, P Zhang, N Sun, B Xu, F Wu, R Chen
Journal of Materials Chemistry A 7 (18), 11205-11213, 2019
712019
Järjestelmä ei voi suorittaa toimenpidettä nyt. Yritä myöhemmin uudelleen.
Artikkelit 1–20