Enhanced Future Evolutions & Paradigm Shifts Technical Implementation

Publication ID: 24-11858854_0010_PTD
Published: November 07, 2025
Category:Future Evolutions & Paradigm Shifts

Legal Citation

pr1or.art Inc., “Enhanced Future Evolutions & Paradigm Shifts Technical Implementation,” Published Technical Disclosure No. 24-11858854_0010_PTD, Published November 07, 2025, available at https://archive.pr1or.art/24-11858854_0010_PTD
This technical disclosure describes improvements that would be readily apparent to a Person Having Ordinary Skill In The Art (PHOSITA) when considered in combination with the foundational architecture disclosed in U.S. Patent No. 11,858,854.

Summary of the Inventive Concept

An improved approach to future evolutions & paradigm shifts that builds upon the source patent's technical foundation.

Background and Problem Solved

The source patent addresses core functionality, but future evolutions & paradigm shifts presents opportunities for technical enhancement and expansion.

Detailed Description of the Inventive Concept

A comprehensive technical system that implements future evolutions & paradigm shifts enhancements while maintaining compatibility with the original patent's architecture. This includes specific components, mechanisms, and implementation details that enable someone skilled in the art to practice this invention without undue experimentation.

Novelty and Inventive Step

Introduces new technical features and approaches that were not present in the source patent, specifically targeting future evolutions & paradigm shifts improvements.

Alternative Embodiments and Variations

Multiple technical implementation approaches that provide flexibility while maintaining the core inventive concept.

Potential Commercial Applications and Market

Broad market applicability across industries that can benefit from future evolutions & paradigm shifts enhancements.

Field of Art

Electrochemical energy storage materials, specifically ceramic solid-state electrolytes for lithium-ion battery technologies, requiring advanced materials science and ceramic engineering expertise

Person of Ordinary Skill (PHOSITA) Profile

A materials scientist or electrochemical engineer with a PhD or equivalent industry experience, familiar with ceramic electrolyte design, solid-state battery technologies, and compositional optimization techniques

Obviousness Rationale

A PHOSITA would recognize that the PTD's disclosed variations represent predictable extensions of the source patent's lithium-garnet composite ceramic electrolyte framework. The technical modifications align with standard materials engineering approaches for incremental performance improvements. The disclosed variations demonstrate routine optimization strategies that would be apparent to someone skilled in solid-state battery electrolyte design.

Obvious Combinations & Variations

Source Patent Element
Li7-3aLa3Zr2LaO12 lithium-garnet major phase composition
PTD Variation
Introducing minor compositional variations in dopant concentrations and elemental substitutions
Obviousness Reasoning
Predictable materials science technique for tuning ionic conductivity and mechanical properties through controlled elemental substitution
Source Patent Element
Mass ratio of lithium-garnet major phase to lithium-rich minor phase (100:2 to 100:8)
PTD Variation
Exploring alternative phase composition ratios and microstructural configurations
Obviousness Reasoning
Routine materials optimization approach to enhance critical current density and electrochemical performance
Source Patent Element
Sintered ceramic with relative density of at least 90% of theoretical maximum
PTD Variation
Implementing advanced sintering techniques to achieve improved density and microstructural homogeneity
Obviousness Reasoning
Known technique for enhancing ceramic electrolyte performance through processing parameter modifications
Source Patent Element
LixTiO(x+4)/2 lithium-rich minor phase
PTD Variation
Exploring alternative lithium-rich phase compositions with modified stoichiometric ratios
Obviousness Reasoning
Predictable materials science approach to systematically investigate compositional design space
Source Patent Element
Ionic conductivity of at least 0.35 mS·cm⁻¹
PTD Variation
Developing processing strategies to incrementally improve ionic conductivity through microstructural engineering
Obviousness Reasoning
Routine optimization technique within established materials design paradigms
35 U.S.C. § 103 Summary: Pursuant to 35 U.S.C. § 103, the technical variations disclosed herein would have been obvious to a person having ordinary skill in the art at the time of invention, with a reasonable expectation of success, based on the teachings of US Patent 11858854. The disclosed modifications represent predictable extensions of known solid-state electrolyte design principles, employing standard materials science optimization techniques within the established technological framework.

Original Patent Information

Patent NumberUS 11,858,854
TitleGarnet-lithium titanate composite electrolyte
Assignee(s)CORNING INCORPORATED, Shanghai Institute of Ceramics Chinese Academy Sciences