John Badding

John Badding

Penn State University

H-index: 48

North America-United States

About John Badding

John Badding, With an exceptional h-index of 48 and a recent h-index of 27 (since 2020), a distinguished researcher at Penn State University, specializes in the field of Solid state, materials, high pressure chemistry.

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

Soft x-ray vector ptycho-tomography: a new quantitative vector nanoimaging method for spin textures in 3D

Nanostructured germanium synthesized by high-pressure chemical vapor deposition in mesoporous silica templates

Three-dimensional topological magnetic monopoles and their interactions in a ferromagnetic meta-lattice

Universal heat flow behavior in highly-confined semiconductor nanosystems

Photochemically mediated polymerization of molecular furan and pyridine: Synthesis of nanothreads at reduced pressures

Glass compositions, glass articles, and methods of making the same

Structural and Elastic Properties of Empty-Pore Metalattices Extracted via Nondestructive Coherent Extreme UV Scatterometry and Electron Tomography

Direct observation of topological magnetic monopoles using soft x-ray vector ptychography at 10 nm resolution

John Badding Information

University

Position

Professor of Chemistry Physics Materials Science and Engineering

Citations(all)

8543

Citations(since 2020)

3092

Cited By

6806

hIndex(all)

48

hIndex(since 2020)

27

i10Index(all)

131

i10Index(since 2020)

80

Email

University Profile Page

Google Scholar

John Badding Skills & Research Interests

Solid state

materials

high pressure chemistry

Top articles of John Badding

Nanostructured germanium synthesized by high-pressure chemical vapor deposition in mesoporous silica templates

Journal of Materials Science: Materials in Electronics

2023/3

Photochemically mediated polymerization of molecular furan and pyridine: Synthesis of nanothreads at reduced pressures

Journal of the American Chemical Society

2022/11/23

Glass compositions, glass articles, and methods of making the same

2022/10/20

Structural and Elastic Properties of Empty-Pore Metalattices Extracted via Nondestructive Coherent Extreme UV Scatterometry and Electron Tomography

ACS Applied Materials & Interfaces

2022/9/2

Direct imaging of magnetic hedgehogs from 3D topological spin textures by soft x-ray vector ptychography

APS March Meeting Abstracts

2022

Mechanistic insights into the pressure-induced polymerization of aryl/perfluoroaryl co-crystals

Polymer Chemistry

2022

Direct observation of 3D topological spin textures and their interactions using soft x-ray vector ptychography

arXiv preprint arXiv:2104.12933

2021/4/27

Synchrotron X-ray metrology of dopant distribution and oxidation state in high pressure CVD grown TM2+:ZnSe optical fibers

Optical Materials Express

2021/2/1

Aluminosilicate glasses for zinc selenide tunable fiber laser cladding

Journal of the American Ceramic Society

2021/2

Scalable synthesis of crystalline one-dimensional carbon nanothreads through modest-pressure polymerization of furan

ACS nano

2021/1/20

Perfect and Defective ¹³C-Furan-Derived Nanothreads from Modest-Pressure Synthesis Analyzed by ¹³C NMR

2021

HPCVD of ZnSxSe1–x claddings for ZnSe optical fibers

2021/7/26

Perfect and Defective 13C-Furan-Derived Nanothreads from Modest-Pressure Synthesis Analyzed by 13C NMR

Journal of the American Chemical Society

2021/6/15

Post-processing ZnSe optical fibers with a micro-chemical vapor transport technique

Optical Materials Express

2020/12/1

Continuous wave Fe2+:ZnSe mid-IR optical fiber lasers

Optics Express

2020/9/28

Oxide-free three-dimensional germanium/silicon core–shell metalattice made by high-pressure confined chemical vapor deposition

ACS nano

2020/9/17

See List of Professors in John Badding University(Penn State University)

Co-Authors

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