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Hybrid Low-Thermal-Expansion Photocurable Nanocomposite Resin for Metallization-Compatible Additive Manufacturing
Description: This innovative resin formulation combines bisphenol A epoxy diacrylate oligomer, trimethylolpropane triacrylate, phosphine oxide photoinitiators, nanosilica, silane-functionalized hexagonal boron nitride, multi-walled carbon nanotubes, and graphene nanoplatelets to create a low thermal expansion material with shear-thinning rheology and...
Published: 3/18/2026
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Updated: 3/10/2026
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Inventor(s):
Jitendra Tate
,
Rahul Sheley
Keywords(s):
Additive Manufacturing
,
Additive Manufacturing Materials
,
Engineering
,
Materials
Nanotechnology
,
Nanomaterials
,
Nanotechnology
Category(s):
Additive Manufacturing
,
Materials > Advanced Materials
,
Nanotechnology
Pulsed Laser Annealing for Diamond Doping
Description: This innovative method uses pulsed laser annealing (PLA) to incorporate and activate dopants in diamond thin films by first depositing a dopant precursor layer on the diamond surface and then applying targeted laser pulses. The process improves doping precision while reducing thermal damage compared to conventional techniques. Experimental...
Published: 3/10/2026
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Updated: 3/10/2026
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Inventor(s):
Ariful Haque
,
Saif Taqy
Keywords(s):
Microelectronics
,
Nanotechnology
,
Semiconductor Materials
,
Semiconductors
Category(s):
Nanotechnology
,
Semiconductors
Pulsed Laser Annealing Doping Technique for Aluminum Nitride (AlN)
Description: This innovative technique involves depositing a dopant precursor film on AlN substrates followed by PLA, which facilitates efficient dopant incorporation and activation. The process leverages rapid, localized heating to overcome challenges associated with doping AlN’s ultrawide bandgap and high resistivity. Validation through X-ray...
Published: 3/10/2026
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Updated: 3/10/2026
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Inventor(s):
Ariful Haque
,
Saif Taqy
Keywords(s):
Microelectronics
,
Nanotechnology
,
Semiconductor Materials
,
Semiconductors
Category(s):
Semiconductors
,
Nanotechnology
Engineered Nanocomposites from Woody Biomass for Advanced Water Purification
Description: This technology utilizes engineered nanocomposites created from woody lignocellulosic biomass, specifically pyrolyzed yellow pine biochar modified with silver nanoparticles, to remove synthetic dyes and heavy metals from wastewater. Combining filtration efficiency, antibacterial activity, and adsorption capacity, the system targets pollutants...
Published: 3/10/2026
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Updated: 3/10/2026
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Inventor(s):
Sujata Mandal
Keywords(s):
Environmental Engineering
,
Nanotechnology
,
Water
Category(s):
Engineering > Environmental Engineering
,
Nanotechnology
,
Engineering
,
Water
Surface Doping of Polycrystalline CVD Diamond Via Submerged Laser Annealing for Semiconductor Applications
Description: This innovation presents a pioneering method to dope polycrystalline CVD diamond by first immersing the diamond samples in a dopant-containing solution followed by a pulsed laser annealing under ambient conditions. This two-step process promotes the diffusion and activation of dopant atoms like boron into the diamond lattice without compromising...
Published: 3/18/2026
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Updated: 12/16/2025
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Inventor(s):
Ariful Haque
,
Adedayo Alaga
,
Saif Taqy
Keywords(s):
Material Science
,
Nanotechnology
,
Semiconductor Technology
,
Semiconductors
Category(s):
Nanotechnology
,
Semiconductors
,
Material Science
Single-Electron Box Fabrication on Scanning Probe Tip for High-Resolution Electric Charge Detection
Description: This technology presents novel fabrication methods for a single-electron box (SEB) integrated onto a scanning probe tip, utilizing atomic force microscopy (AFM) to measure electric forces rather than current for improved detection sensitivity and simplified operation. Two advanced fabrication techniques are developed, involving platinum-coated...
Published: 1/19/2026
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Updated: 11/11/2025
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Inventor(s):
Yoichi Miyahara
,
Binod D.C.
Keywords(s):
Nanotechnology
,
Quantum Measurement Devices
Category(s):
Nanotechnology
Use of Nanoclays for the Removal of Non-Plasmid DNA Components from Cellular Extracts
Description: This technology introduces a groundbreaking method for purifying pDNA through the use of nanoclay particles. By adding these specially formulated nanoclays to a mixture of biomolecular materials, such as cellular extracts, key contaminants and extraneous materials can be selectively bound and removed. This process represents a significant...
Published: 11/11/2025
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Updated: 3/19/2025
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Inventor(s):
Lysle Lewis
,
Drew Sowersby
Keywords(s):
Nanoclays
,
Non-Plasmid DNA
Category(s):
Nanotechnology
,
Life Science
,
Chemistry
Fluidic system for high throughput preparation of polymeric microparticles and nanoparticles
Description: This technology encompasses a fiber fluidic system designed for the production of particles, utilizing a cylinder packed with elongated fibers. The system operates by introducing a constrained phase fluid and a free phase fluid through separate openings at one end of the cylinder. These fluids interact along the lengths of the fibers to...
Published: 12/16/2025
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Updated: 12/12/2024
|
Inventor(s):
Tania Betancourt
,
John Massingill
,
Holly Stretz
Keywords(s):
Drug Delivery
,
Electronics
,
Electronics and Photonics
,
Fiber Fluidics
,
Formation of Monodispersed Particles
,
Industrial Coatings
Category(s):
Nanotechnology
,
Engineering
,
Materials
Catalyst Nanoarchitectures for Enhanced Activity and Stability
Description: This innovative method involves heating a non-catalytic metal compound in the presence of a catalytic metal to transform its structure, creating openings where the catalytic metal is then integrated. This process, which can occur in a hydrogen-containing atmosphere, results in a novel nanoarchitecture that significantly enhances the catalytic...
Published: 11/11/2025
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Updated: 7/26/2024
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Inventor(s):
Christopher Rhodes
,
Jose Salomon
Keywords(s):
Energy Conversion
,
Environmental Remediation
,
Pollution Control
,
Storage Systems
,
Structured Nanoarchitectures
Category(s):
Nanotechnology
,
Engineering
,
Chemistry
Material Selective Regrowth Structure and Method
Description: This technology outlines a precise method for constructing nanoscale structures by forming a window in a semiconductor structure and sequentially depositing and regrowing materials within this window. The process involves a substrate, a first layer, and a mask layer, where a second layer is deposited such that a gap remains. This gap is...
Published: 1/27/2026
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Updated: 7/26/2024
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Inventor(s):
Edwin Piner
Keywords(s):
Depositing and Regrowing Materials
,
Nanoscale Structures
,
Semiconductor Structure
Category(s):
Nanotechnology
,
Semiconductors
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