Keyphrases
MXene-based Composites
100%
Ti3C2Tx
44%
Lens Design
44%
Accommodating Intraocular Lens
44%
Health Technology
44%
2D Titanium Carbide
44%
Biological Modeling
44%
Optoelectronic Properties
33%
Nanomaterials
29%
Cellular Pathways
22%
Adjustable Focus
22%
Test Cell
22%
Biomedical Applications
22%
Flow Cytometry
22%
Cellular Response
22%
Liquid Crystal Layer
22%
Optical Power
22%
Environmental Challenges
22%
Biomaterials
22%
Variable-focus Lens
22%
Ocular Drug Delivery
22%
Liquid Crystal
22%
Lens System
22%
Nitrides
22%
Anterior Eye
22%
Dielectric Anisotropy
22%
Modeling Techniques
22%
Electrophysiology
22%
Optical Transparency
18%
Biocompatibility
18%
Visual Acuity
11%
Human Lens Epithelial Cells
11%
Molecular Reorientation
11%
Applied Electric Field
11%
Acrylate
11%
Accommodative Function
11%
Nitride MXenes
11%
Out-of-focus
11%
Transparent Electrode
11%
High Electronic Conductivity
11%
Inflammatory Response
11%
Cataract Patients
11%
Sheet Resistance
11%
Intraocular Lens
11%
Visible Region
11%
Monocytic Cells
11%
Solid Support
11%
Ti3C2Tx MXene
11%
Hydrophilicity
11%
Transmittance
11%
Engineering
Optoelectronics
66%
Liquid Crystal
66%
Test Cell
44%
Lens Design
44%
Optical Power
44%
Nitride
44%
Dielectrics
22%
Optical Transparency
22%
Biomedical Application
22%
Cellular Response
22%
Research Project
22%
Conductive
22%
Applied Electric Field
22%
Nanomaterial
22%
Electronic Conductivity
22%
Natural Lens
22%
Sheet Resistance
22%
MXene
22%
Lens System
22%
Hydrophobic
22%
Two Dimensional
22%
Field Result
22%
Drug Delivery
22%
Hydrophilicity
22%
Material Science
Nanostructured Material
88%
Liquid Crystal
59%
Biocompatibility
51%
Transition Metal Carbide
51%
Nitride Compound
51%
Titanium Carbide
44%
Biomaterial
44%
Intraocular Lens
44%
Anisotropy
44%
Dielectric Material
44%
Optical Power
14%
MXene
7%