Ehud Gazit

Ramat-Hasharon, Israel

Ehud Gazit

This inventor holds 54 USPTO granted patents and 25 published patent applications and 18 EPO patents, primarily in Peptide Nanostructures (CPC class A61K). Top assignees: Tel Aviv University, Tel Hashomer Medical Research Infrastructure and Services Ltd., Technology Innovation Momentum Fund (Israel) Limited Partnership. Active years: 2009-2024.

USPTO Granted Patents = 54 

% Patents Active = 44.4

 

Average Co-Inventor Count = 2.5

ph-index = 9

Forward Citations = 198(Granted Patents)

Forward Citations (Not Self Cited) = 115(Dec 10, 2025)


Inventors with similar research interests:


Location History:

  • Tel Aviv, IL (2022)
  • Ramat-HaSharon, IL (2009 - 2023)

Company Filing History:


Years Active: 2009-2024

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Areas of Expertise:
Peptide Nanostructures
Hydrogel Hybrids
Amyloid Disease Treatments
Synthetic Ligands
Cancer Targeting Nanoparticles
Photocatalytic Hydrogen Production
Self-Assembled Structures
Biocompatible Polymers
Neurodegenerative Diseases
Dipeptide Analogs
Naphthoquinone Derivatives
Peptide-Based Materials
54 patents (USPTO):Explore Patents

Title: **Ehud Gazit: Innovator in Piezoelectric Materials and Hybrid Hydrogels**

Introduction

Ehud Gazit, based in Ramat-Hasharon, Israel, is a distinguished inventor known for his contribution to the field of materials science. With an impressive portfolio of 54 patents, Gazit has made significant advancements, particularly in piezoelectric peptide-based materials and hybrid hydrogels. His work stands at the intersection of chemistry and technology, showcasing innovative approaches to material design and application.

Latest Patents

Ehud Gazit's latest patents exemplify his cutting-edge research. One notable invention is a piezoelectric transducer that features a three-dimensional structure composed of self-assembling peptides. This innovative design includes peptides ranging from 2 to 10 amino acid residues, with specific sequences like Hyp-Phe-Phe and various aromatic compounds, ensuring enhanced functionality. Additionally, his work on self-assembled hybrid hydrogels involves creating a network of fibrillar nanostructures using different types of aromatic moieties. This unique composition allows for diverse applications and is indicative of Gazit’s commitment to advancing material science.

Career Highlights

Throughout his career, Gazit has contributed to several prominent institutions. He has been associated with Ramot at Tel Aviv University Ltd. and Tel Aviv University Future Technology Development L.P., where he has conducted groundbreaking research that led to numerous patents and innovations. His work continues to influence the development of new technologies in diverse fields.

Collaborations

In his journey of innovation, Gazit has collaborated with notable colleagues such as Meital Reches and Lihi Adler-Abramovich. These partnerships have fostered a creative environment where ideas can flourish, leading to significant advancements in material science.

Conclusion

Ehud Gazit's dedication to innovation, combined with his prolific output of patents, marks him as a key figure in the scientific community. His contributions to piezoelectric materials and hybrid hydrogels not only enhance technological applications but also pave the way for future research in materials science. Gazit remains a vital innovator, setting new standards in the industry with his creative and scientific pursuits.

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