Jonathan K. Pokorski

About Jonathan K. Pokorski

Jonathan K. Pokorski, With an exceptional h-index of 32 and a recent h-index of 25 (since 2020), a distinguished researcher at University of California, San Diego, specializes in the field of Chemistry Materials.

His recent articles reflect a diverse array of research interests and contributions to the field:

Biocomposite thermoplastic polyurethanes containing evolved bacterial spores as living fillers to facilitate polymer disintegration

Monovalent and multivalent vaccines for prevention and treatment of disease

Freeze dried viral nanoparticle constructs

Inter-coat protein loading of active ingredients into Tobacco mild green mosaic virus through partial dissociation and reassembly of the virion

Fundamental scaling relationships in additive manufacturing and their implications for future manufacturing and bio-manufacturing systems

Melt processed viral nanoparticle constructs

Poly (Oxanorbornene)‐Protein Conjugates Prepared by Grafting‐to ROMP as Alternatives for PEG

Melt stability of carbonic anhydrase in polyethylene oxide for extrusion of protein–polymer composite materials

Jonathan K. Pokorski Information

University

Position

Department of Nanoengineering

Citations(all)

4108

Citations(since 2020)

2836

Cited By

2181

hIndex(all)

32

hIndex(since 2020)

25

i10Index(all)

66

i10Index(since 2020)

60

Email

University Profile Page

Google Scholar

Jonathan K. Pokorski Skills & Research Interests

Chemistry Materials

Top articles of Jonathan K. Pokorski

Biocomposite thermoplastic polyurethanes containing evolved bacterial spores as living fillers to facilitate polymer disintegration

Nature Communications

2024/4/30

Monovalent and multivalent vaccines for prevention and treatment of disease

2024/4/4

Freeze dried viral nanoparticle constructs

2024/4/2

Inter-coat protein loading of active ingredients into Tobacco mild green mosaic virus through partial dissociation and reassembly of the virion

Scientific Reports

2024/3/26

Fundamental scaling relationships in additive manufacturing and their implications for future manufacturing and bio-manufacturing systems

arXiv preprint arXiv:2307.14497

2023/7/26

Melt processed viral nanoparticle constructs

2023/5/23

Poly (Oxanorbornene)‐Protein Conjugates Prepared by Grafting‐to ROMP as Alternatives for PEG

Macromolecular Bioscience

2024/2

Melt stability of carbonic anhydrase in polyethylene oxide for extrusion of protein–polymer composite materials

RSC Applied Polymers

2024

Study of uricase-polynorbornene conjugates derived from grafting-from ring-opening metathesis polymerization

Journal of Materials Chemistry B

2024

Delivery of nematicides using TMGMV-derived spherical nanoparticles

Nano Letters

2023/6/16

Encapsulation of ultra-stable insulin analogues with polymer melts

2023/2/21

Fabrication of an inexpensive injection molding instrument for rapid prototyping of high precision parts

Polymer

2023/1/3

PET-RAFT to expand the surface-modification chemistry of melt coextruded nanofibers

Polymer Chemistry

2023

Recent advancements in single dose slow‐release devices for prophylactic vaccines

2023/1

Melt Processing Virus-Like Particle-Based Vaccine Candidates into Biodegradable Polymer Implants

2023/9/30

Phenotypically complex living materials containing engineered cyanobacteria

Nature Communications

2023/8/7

Photocurable Coatings to Improve the Mechanical Properties of 3D Printable Expanding Foams

ACS Applied Materials & Interfaces

2022/11/28

Polynorbornene-based bioconjugates by aqueous grafting-from ring-opening metathesis polymerization reduce protein immunogenicity

Cell Reports Physical Science

2022/10/19

A Single‐Dose Qβ VLP Vaccine against S100A9 Protein Reduces Atherosclerosis in a Preclinical Model

Advanced therapeutics

2022/10

NOVEL PEPTOID BLOCKING O-GlcNAcylated NF-kappaB c-Rel

2022/8/18

See List of Professors in Jonathan K. Pokorski University(University of California, San Diego)

Co-Authors

academic-engine