TECHNOLOGY SEARCH
CRI
↗
Search Results - battery
7
Results
Sort By:
Published Date
Updated Date
Title
ID
Descending
Ascending
Lithium Ion Conducting Polymer Resin for In-Situ Curing of Cathode Binder and Electrolyte Layer for All Solid State Composite Lithium Batteries
Innovative polymer enhances solid-state batteries by improving structure and ion movement, simplifying assembly and boosting performance. https://nu.technologypublisher.com/files/sites/adobestock_805635617_(1).jpeg https://nu.testtechnologypublisher.com/files/sites/mark-saulich-5.jpg Source by By Ryan/ Adobe stock file # 805635617 Background Solid...
Published: 1/27/2025
|
Updated: 6/24/2024
|
Inventor(s):
Sanjeev Mukerjee
,
Derrick Maxwell
,
Max Rutman
,
Luisa Gomes
Keywords(s):
Battery
,
Battery
Electrode Binder
,
Chemistry
,
Curable Resin
,
electrochemistry
,
Electrode
,
Electrode ink
,
Energy
,
Energy Technology
,
Manufacturing
,
Materials
,
Polymer
,
Solid-state batteries
,
Solid-state electrolyte
Category(s):
Technology Classifications
,
Technology Classifications > 2. Physical Science
Aqueous-based high nickel electrodes manufacturing using sustainable cellulose nanomaterials as protector
Researchers have developed a sustainable process for producing high-performance, aqueous-based NMC cathodes using cellulose nanomaterials, enhancing lithium-ion
battery
applications. https://nu.technologypublisher.com/files/sites/adobestock_853583841.jpeg https://nu.technologypublisher.com/files/sites/mark-saulich-scaled10.jpg Source:lertsakwiman/...
Published: 1/27/2025
|
Updated: 6/24/2024
|
Inventor(s):
Hongli Zhu
,
Ying Wang
Keywords(s):
Battery
,
biomass
,
cellulose fiber
,
Sustainability
Category(s):
Technology Classifications > 2. Physical Science
,
Technology Classifications > 2. Physical Science > Advanced materials/Nanomaterials
A novel mixing approach to fabricate high solid content
battery
ink for printed batteries
High solid content inks for efficient and eco-friendly screen-printed batteries. https://nu.technologypublisher.com/files/sites/adobestock_430034772.jpeg https://nu.technologypublisher.com/files/sites/mark-saulich-scaled6.jpg Source: ZETHA_WORK/ adobe stock Lithium ion
battery
starts recharging electric energy supply, fast charging technology...
Published: 1/27/2025
|
Updated: 5/22/2024
|
Inventor(s):
Hongli Zhu
,
Ying Wang
Keywords(s):
Battery
,
Electrode ink
,
Screen printing
Category(s):
Technology Classifications > 2. Physical Science
,
Technology Classifications > 2. Physical Science > Advanced materials/Nanomaterials
Designing Low Tortuosity Electrode through Pattern Optimization for Fast-Charging using Screen Printing
New low-tortuosity electrode tech accelerates lithium-ion
battery
charging with cost-effective screen printing method https://nu.testtechnologypublisher.com/files/sites/inv-23067.jpeg https://nu.testtechnologypublisher.com/files/sites/mark-saulich-1.jpg Source: by By Ян Заболотний/ adobe stock file # 872713802 Background Lithium-ion batteries,...
Published: 1/27/2025
|
Updated: 4/25/2024
|
Inventor(s):
Hongli Zhu
,
Ying Wang
Keywords(s):
Battery
,
Electric vehicle
,
Manufacturing
,
Screen printing
Category(s):
Technology Classifications
,
Technology Classifications > 2. Physical Science
Industrial large-scale flexible micro batteries manufacturing by printing electrodes and current collects on both sides of paper substrates
Northeastern researchers developed a scalable roll-to-roll printing method for flexible micro-batteries using paper substrates. This eco-friendly approach combines electrode printing on both sides of the paper, improving cost-efficiency and customization. https://nu.technologypublisher.com/files/sites/adobestock_54721161_(1).jpeg https://nu.technologypublisher.com/files/sites/mark-saulich-scaled7.jpg source:...
Published: 1/27/2025
|
Updated: 4/25/2024
|
Inventor(s):
Hongli Zhu
,
Ying Wang
Keywords(s):
Battery
,
Energy
,
Energy Technology
,
Paper Substrate
,
Roll-to-roll Printing
Category(s):
Technology Classifications > 2. Physical Science
,
Technology Classifications > 2. Physical Science > Electronics/Semiconductors
,
Technology Classifications > 2. Physical Science > Energy
,
Technology Classifications > 2. Physical Science > Manufacturing
,
Technology Classifications > 2. Physical Science > Advanced materials/Nanomaterials
Solid State Energy Storage Devices Monolithically Printed From Dispersions
scalable, directed assembly-based printing method has been developed for high-performance, stable all-solid-state Li metal micro-batteries, ideal for flexible electronics and RFID tags. https://nu.technologypublisher.com/files/sites/adobestock_801169798.jpeg https://nu.technologypublisher.com/files/sites/mark-saulich-scaled8.jpg Source: Shayan...
Published: 1/27/2025
|
Updated: 3/21/2024
|
Inventor(s):
Ahmed Busnaina
,
Ahmed Mostafa Abdelaziz
Keywords(s):
Battery
,
Fluidic assembly
,
Li metal anode
,
Mocrobatteries
,
Solid-state electrolyte
Category(s):
Technology Classifications > 2. Physical Science
,
Technology Classifications > 2. Physical Science > Advanced materials/Nanomaterials
,
Technology Classifications > 2. Physical Science > Electronics/Semiconductors
,
Technology Classifications > 2. Physical Science > Energy
,
Technology Classifications > 2. Physical Science > Manufacturing
Interface stabilized highly scalable cell level high energy all-solid-state batteries based on Si anode and sulfide ion conductor
Revolutionary solid-state silicon anode batteries offering high energy density, safety, and affordability https://nu.technologypublisher.com/files/sites/adobestock_526620639.jpeg https://nu.technologypublisher.com/files/sites/mark-saulich-scaled1.jpg Source: KanawatTH/ Adobe Stock Background Long-lasting, quick-charging batteries are essential...
Published: 1/27/2025
|
Updated: 3/21/2024
|
Inventor(s):
Daxian Cao
,
Hongli Zhu
Keywords(s):
Battery
Category(s):
Technology Classifications > 2. Physical Science > Energy
,
Technology Classifications > 2. Physical Science > Electronics/Semiconductors
,
Technology Classifications > 2. Physical Science > Advanced materials/Nanomaterials
Home
|
Search
|
RSS
|
Subscribe
Copyright©
Northeastern University
. All rights reserved. Powered by
Inteum
.