activity
20192021
most citedElement Replacement Approach by Reaction with Lewis Acidic Molten Salts to Synthesize Nanolaminated MAX Phases and MXenes

1.5k citations · 1.5k across the 3 of their papers we have counts for

collaborators

5 papers

cond-mat.mtrl-sci20214 cited

MAX Phase Zr2SeC and Its Thermal Conduction Behavior

Ke Chen, Xiaojing Bai, Xulin Mu +9

The elemental diversity is crucial to screen out ternary MAX phases with outstanding properties via tuning of bonding types and strength between constitutive atoms. As a matter of…

cond-mat.mtrl-sci2020

Molten salt synthesis of a nanolaminated Sc2SnC MAX Phase

Youbing Li, Yanqing Qin, Ke Chen +8

The MAX phases are a family of of ternary layered material with both metal and ceramic properties, and it is also precursor ma-terials for synthesis of two-dimensional MXenes. The…

cond-mat.mtrl-sci2019

Multielemental single-atom-thick A layers in nanolaminated V2(Sn, A)C (A=Fe, Co, Ni, Mn) for tailoring magnetic properties

Youbing Li, Jun Lu, Mian Li +11

Tailoring of individual single-atom-thick layers in nanolaminated materials offers atomic-level control over material properties. Nonetheless, multielement alloying in individual a…

cond-mat.mtrl-sci20193 cited

Synthesis of MAX Phases Nb2CuC and Ti2(Al0.1Cu0.9)N by A-site Replacement Reaction in Molten Salts

Haoming Ding, Youbing Li, Jun Lu +12

New MAX phases Ti2(AlxCu1-x)N and Nb2CuC were synthesized by A-site replacement by reacting Ti2AlN and Nb2AlC, respectively, with CuCl2 or CuI molten salt. X-ray diffraction, scann…

cond-mat.mtrl-sci20191.5k cited

Element Replacement Approach by Reaction with Lewis Acidic Molten Salts to Synthesize Nanolaminated MAX Phases and MXenes

Mian Li, Jun Lu, Kan Luo +12

Nanolaminated materials are important because of their exceptional properties and wide range of applications. Here, we demonstrate a general approach to synthesize a series of Zn-b…