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Energy-efficient synthesis of Ti
3
C
2
T
x
MXene for electromagnetic shielding
H. Renuka
, Morgan Chen
, Shwetha Sunil Kumar
, Long Yang
,
Michael T. Lanagan
, Sanjit Ghose
, B. Reeja-Jayan
Engineering Science and Mechanics
Materials Research Institute (MRI)
Research output
:
Contribution to journal
›
Article
›
peer-review
11
Link opens in a new tab
Scopus citations
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Dive into the research topics of 'Energy-efficient synthesis of Ti
3
C
2
T
x
MXene for electromagnetic shielding'. Together they form a unique fingerprint.
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Keyphrases
Energy Efficient
100%
Efficient Synthesis
100%
Electromagnetic Shielding
100%
Ti3C2Tx MXene
100%
Ti3C2Tx
100%
Synthesis Methods
50%
Electromagnetic Waves
50%
Microwave Synthesis
50%
Electromagnetic Interference Shielding Effectiveness (EMI SE)
50%
Irradiation
25%
Two Dimensional
25%
Preparation Time
25%
Hydrofluoric Acid
25%
Percentage Yield
25%
OH Groups
25%
X-band
25%
Shock
25%
Functional Groups
25%
Harsh Conditions
25%
Charge Transport
25%
Oxidation Resistance
25%
Production Time
25%
Synchrotron X-ray
25%
Multi-step Process
25%
Scalable Approaches
25%
Atomic Ordering
25%
Wave Attenuation
25%
Structural Quality
25%
Fast Approach
25%
Electromagnetic Interference Shielding
25%
Microwave-induced
25%
MXene-based Composites
25%
EMI Shielding
25%
Engineering
Electromagnetic Interference
100%
MXene
100%
Synthesis Method
66%
Shielding Performance
66%
Two Dimensional
33%
Function Analysis
33%
Functional Group
33%
Harsh Condition
33%
Oxidation Resistance
33%
Production Time
33%
Charge Transport
33%
X-Band
33%
Nanosheet
33%
Step Process
33%
Pair Distribution
33%
Material Science
Titanium Carbide
100%
MXene
100%
Electromagnetic Interference Shielding
50%
Film
16%
Oxidation Reaction
16%
Nanosheet
16%
Oxidation Resistance
16%
Pair Distribution Function Analysis
16%
Chemical Engineering
Electromagnetic Interference Shielding
100%
Hydrofluoric Acid
33%
Functional Group
33%
Nanosheet
33%
Film
33%