Research in Marlboro
Science Explorer records 1 research institutions in Marlboro, United States. The largest by output are Ashwin-Ushas (United States).
- Research institutions
- 1
- Research works
- 81 ▲ 3065% vs 2013–17
- Top-10% rate, 2022–2025
- 0.0% record average 16.5%
A city carries no overall standing here. The composite score is built for institutions and countries, the units its floors and field normalisation were designed around. An empty rank on this page is a statement about the measure, not about the place.
Which research institutions are in Marlboro?
| # | Institution | Works | Against the largest here | World rank |
|---|---|---|---|---|
| 1 | Ashwin-Ushas (United States)Company | 81 | not ranked |
By fractional works over the whole record; world rank on research quality in 2022–2025. Bars are scaled to the largest institution in this city, not to anything off the page.
What is Marlboro strongest at in research?
Relative to its size, research in Marlboro is most concentrated in Materials Science (12.1× the world share in Materials Science).
- Materials ScienceField · 37.6 works12×
Location quotient against the world baseline. Inside a single field a city is a meaningful unit, which is why this is where a city is measured at all.
Which keywords describe research in Marlboro?
By fractional works in all years, weighted toward what it does more of than the world: Nanocomposites, Biomedical Applications, Tissue Engineering, Organic Electronics, Nanofibers, Conducting Polymers, Polyaniline and Graphene.
- Energy Conversion
- Polymer Composites
- Optical Sensors
- Solar Cells
- Lithium-ion Batteries
- Nanogenerators
- Tungsten Oxide
- Conjugated Polymers
- Biosensors
- Field-Effect Transistors
- Electronic Properties
- Two-Dimensional Materials
- Graphene Oxide
- Carbon
- Nanotubes
- Electronics
- Graphene
- Nanofibers
- Organic Electronics
- Biomedical Applications
- Nanocomposites
- Tissue Engineering
- Conducting Polymers
- Polyaniline
- Carbon Nanotubes
- Applications
- Synthesis
- Composites
- Raman Spectroscopy
- Chemical Vapor Deposition
- Nanomaterials
- Nanocrystals
- Bulk Heterojunction
- Electrochromic
- Energy Storage
- Wearable
- Dielectric Properties
- Ion-Selective Electrodes
- Semiconductors
- Semiconductor
Size is fractional works in all years in the topics tagged with each word; colour is the word's share of this city's work against its share of the world's. The 40 words are chosen for being large and distinctive. Each links to the topic it comes from most.
All 40 words, with their numbers
- Nanocomposites19▲ 30×4 topics
- Biomedical Applications15▲ 18×7 topics
- Tissue Engineering13▲ 29×2 topics
- Organic Electronics12▲ 91×2 topics
- Conducting Polymers12▲ 97×1 topic
- Nanofibers12▲ 79×2 topics
- Polyaniline12▲ 136×1 topic
- Graphene11▲ 27×5 topics
- Carbon Nanotubes10▲ 36×6 topics
- Electronics9▲ 117×3 topics
- Applications8▲ 47×2 topics
- Nanotubes8▲ 85×2 topics
- Synthesis8▲ 17×2 topics
- Carbon8▲ 123×1 topic
- Composites8▲ 126×1 topic
- Graphene Oxide7▲ 90×2 topics
- Raman Spectroscopy7▲ 37×2 topics
- Two-Dimensional Materials7▲ 50×2 topics
- Chemical Vapor Deposition7▲ 109×1 topic
- Electronic Properties7▲ 81×1 topic
- Nanomaterials6▲ 9.0×6 topics
- Field-Effect Transistors6▲ 36×2 topics
- Nanocrystals4▲ 21×2 topics
- Biosensors4▲ 7.6×3 topics
- Bulk Heterojunction3▲ 99×1 topic
- Conjugated Polymers3▲ 99×1 topic
- Electrochromic3▲ 114×1 topic
- Tungsten Oxide3▲ 114×1 topic
- Energy Storage3▲ 8.6×3 topics
- Nanogenerators3▲ 40×1 topic
- Wearable3▲ 40×1 topic
- Lithium-ion Batteries2▲ 12×3 topics
- Dielectric Properties2▲ 19×2 topics
- Solar Cells2▲ 9.3×2 topics
- Ion-Selective Electrodes2▲ 27×1 topic
- Optical Sensors2▲ 19×1 topic
- Semiconductors2▲ 10×2 topics
- Polymer Composites2▲ 13×3 topics
- Semiconductor2▲ 7.5×2 topics
- Energy Conversion2▲ 15×2 topics
What research is done in Marlboro?
Area is fractional works; colour is the subfield each topic belongs to.
- 1 Hydraulic and Pneumatic Systems Mechanical Engineering 0 works
- 2 Nuclear Engineering Thermal-Hydraulics Aerospace Engineering 0 works
- 3 Granular flow and fluidized beds Computational Mechanics 0 works
- 4 Carbon and Quantum Dots Applications Materials Chemistry 0 works
- 5 Advanced Nanomaterials in Catalysis Materials Chemistry 0 works
- 6 Supramolecular Self-Assembly in Materials Biomaterials 0 works
Research output over time
The same series as a ribbon — one cell per year, darker for more.