Keyphrases
Wireless
100%
Multi-walled Carbon Nanotubes (MWCNTs)
67%
Stretchable
64%
Transfer Printing
63%
High Performance
59%
Three-dimensional (3D)
58%
Stretchable Electronics
58%
Ultrathin
51%
Electronic System
50%
Stamping
50%
Bioresorbable
46%
Transistor
43%
Battery-free
37%
Electronic Devices
37%
Elastomeric Substrate
36%
High-resolution
35%
Transient Electronics
34%
Recent Advances
31%
Wafer
31%
Plastic Substrate
31%
Optogenetics
30%
Thin-film Transistors
29%
Flexible Electronics
28%
Microfluidics
28%
Multicrystalline Silicon
28%
Biocompatibility
28%
Biofluids
27%
Aligned Arrays
26%
Biodegradable Electronics
26%
Printing Techniques
26%
Microfluidic System
25%
Gallium Arsenide
25%
Elastomer
24%
Mechanical Properties
24%
Compressive Buckling
24%
Epidermal Electronics
24%
Light-emitting Diodes
24%
Semiconductors
24%
Ribbon
24%
High-performance Electronics
23%
3D Structure
23%
Stretchability
23%
Fabrication Methods
23%
Two Dimensional
23%
Soft Lithography
22%
Electrohydrodynamic Printing
22%
Silicon Nanomembrane
22%
Epidermis
21%
Soft Skin
21%
Polydimethylsiloxane
20%
Engineering
Thin Films
74%
Illustrates
67%
Nanomaterial
60%
Microscale
48%
Single-Walled Carbon Nanotube
48%
Transients
40%
Light-Emitting Diode
38%
High Resolution
37%
Optoelectronics
36%
Engineering
34%
Carbon Nanotubes
34%
Flexible Electronics
32%
Interconnects
32%
Elastomer
32%
Finite Element Analysis
30%
Solar Cell
28%
Nanoscale
28%
Actuator
27%
Implant
27%
Thin-Film Transistor
24%
Two Dimensional
23%
Photovoltaics
22%
Nanometre
22%
Silicon Dioxide
21%
Integrated Circuit
21%
Crystalline Silicon
21%
Broad Range
20%
Photonics
20%
Theoretical Study
20%
Biological Tissue
20%
Radio Frequency
20%
Nanowire
19%
Gallium Arsenide
19%
Analytical Model
18%
Limitations
18%
Fiber Optics
18%
Field-Effect Transistor
16%
Microcontact Printing
16%
Dimensional Structure
16%
Microsystem
16%
Phase Mask
16%
Silicon Single Crystal
15%
Antenna
15%
Polydimethylsiloxane
15%
Monocrystalline Silicon
15%
Soft Lithography
14%
Wearable Sensor
14%
Lithography
14%
Energy Harvesting
14%
Feature Size
13%