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IBL-26-0187

DOUBLE LAYERED HYBRID SOLID-STATE ELECTROLYTE, METHOD FOR MANUFACTURING OF THE SAME AND ALL SOLID STATE BATTERY

Listed on
2026-04-27
Double-layer Hybrid Solid Electrolyte and All-Solid State Battery Including the Same

This technology relates to a double-layer hybrid solid electrolyte, a method for manufacturing the same, and an all-solid state battery including the same. In particular, it is a technology designed to enhance the performance, structural stability, and application efficiency of battery materials and electrode designs based on the use of oxide (LTPO) and lithium aluminum-lanthanum-zirconium oxide (LALZO) charged particles within a PVDF-HFP polymer.

Conventionally, in full-height batteries, the risk associated with organic liquid electrolytes could lead to performance degradation, process complexity, lack of stability, or limitations on the scope of application. Accordingly, this technology proposes a technical concept for implementing lithium-tantalum-phosphorus oxide (LTP) within poly(vinylidene fluoride-co-hexafluoropropylene) (PVDF-HFP) polymers by applying whole-height somatic embryos of the first high-grade variety as a core component.

As a result, mechanical strength and electrochemical stability effects regarding the aforementioned lithium metal can be expected. Furthermore, stability, reproducibility, and scalability in real-world application environments can be enhanced through the use of oxide (LTPO) and lithium aluminum-lanthanum-zirconium oxide (LALZO) filled particles within the PVDF-HFP polymer. Additionally, this technology offers the potential to be utilized as a high-performance material, device, apparatus, or process technology in related industries. It is advantageous for subsequent commercialization and process expansion, and is suitable for demonstration deployment.

Key Features:
  • Applying whole-height somatic embryo composition of the first high-grade variety
  • Implementing the usage characteristics of oxide (LTPO) and lithium aluminum-lanthanum-zirconium oxide (LALZO) filled particles within the PVDF-HFP polymer
  • poly(vinylidene Includes a process or device structure based on fluoride-co-hexafluoropropylene) (PVDF-HFP)
  • Improves performance and usability through mechanical strength and electrochemical stability for the lithium metal.


Soongsil University
Park Gyeong-won | Jihwan Kim | Chang Jae-seong | Park Deok-hye | Park Yoo-yeon | Minha Kim | Byun Jeong-hyeon | Wonchan Kim | Soyeon Ahn
Document
Date of application:
2023-10-18
|
Patent registration number:
10-2024-0062964
Industry
battery
advanced materials
Technology
Energy•Battery
Chemistry
New materials
Country
Korea
Family Patent

N/A

Price
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