Matthias Zeller
Materials Science · Purdue University West Lafayette
Publications
2,359
Citations
18,865
Est. group size
~16
Recurring co-author estimate
Active years
37
Publishing since 1990
Matthias Zeller's work centers on using X-ray crystallography to determine and analyze the structures of a wide range of chemical compounds, including metal-organic complexes, metallacrowns, halogen-bonded assemblies, and pharmaceutical crystal forms. This research supports collaborators across inorganic, organic, and materials chemistry by clarifying molecular structure, bonding, and solid-state packing, with applications spanning drug formulation, magnetism, sensing, and ionic liquids. The publication record reflects extensive collaborative crystallography work rather than a single narrow topic, appearing across many co-authored papers each year.
Publication counts were high and relatively steady from 2017 through 2023 (roughly 150-255 per year, likely reflecting broad crystallography collaborations), but the count drops sharply in 2024-2026, which may partly reflect incomplete indexing of the most recent years.
Generated by claude-sonnet-5 from public bibliographic data · Jul 20, 2026
- Covalency of the Strong Br···N Halogen Bonds in Neutral and Ionic Complexes
The Journal of Physical Chemistry A · 2026
- Incorporation of 4-Aminobenzoate and 4-Hydroxybenzoate into the Heterotrimetallic Aluminum-Lanthanide-Sodium 12-Metallacrown-4 Unit
Journal of Chemical Crystallography · 2026
- Utilizing 5-Nitroisophthalate to Construct 12-Metallacrown-Dimers and Molecular Parallelograms
Journal of Chemical Crystallography · 2026
- Novel lanthanide( <scp>iii</scp> )/gallium( <scp>iii</scp> ) metallacrowns with appended visible-absorbing organic sensitizers for molecular near-infrared imaging of living cells
Chemical Science · 2025
- Impact of Secondary Sphere Hydrogen Bonds on O<sub>2</sub> Reactivity within a Nonheme Iron Complex
Journal of the American Chemical Society · 2025
- Drug Property Optimization: Design, Synthesis, and Characterization of Novel Pharmaceutical Salts and Cocrystal-Salt of Lumefantrine
Molecular Pharmaceutics · 2025
- Cocrystallization of Aromatic (Di)amines with Nitrobenzene Acceptors Leading to the Charge-Transfer Assemblies with Extended Near-Infrared Absorption
Crystal Growth & Design · 2025
- Slow Relaxation of the Magnetization in Dysprosium–Aluminum Metallacrowns
ACS Omega · 2025
- Supramolecular Entrapping and Extraction of Selenate, Molybdate and Tungstate Ions from Water by Nanojars
Inorganic Chemistry · 2025
- Property-Driven Design of Thermally Robust Organophosphorus Ionic Liquids for High-Temperature Applications
ACS Applied Engineering Materials · 2025
- Salts of boronium (+3) ions with unprecedented hydrolytic stability. Design, synthesis, single-crystal X-ray structures, electrochemistry, and thermophysical properties
RSC Advances · 2025
- Lipid-Inspired Low Melting Ionic Liquids via Synergistic Cyclopropanation and Branching of Terpenoids
ACS Materials Au · 2025
- Charge‐transfer Adducts vs Iodine(I) Complexes: Dual Role of Halogen Bonding in Reactions of Diiodine with N‐donor Bases
ChemPhysChem · 2025
- Nature and spectroscopic implications of halogen vs π−π stacked charge-transfer bonding between p-phenylenediamine and iodobenzene derivatives
Journal of Molecular Structure · 2025
- A Redox-Active Hydrogen Bond Acceptor Enables Ligand Exchange in a Zinc Complex
Inorganic Chemistry · 2025
- The Cambridge Structural Database×1029
- Inorganic Chemistry×62
- Acta Crystallographica Section E Crystallographic Communications×33
- Organometallics×26
- Crystal Growth & Design×24
- Casey R. Wade
Materials Science · The Ohio State University
- N. Schultheiss
Materials Science · Purdue University West Lafayette
- Curtis E. Moore
Materials Science · The Ohio State University
- Manish Jana
Materials Science · Purdue University West Lafayette
- Joseph M. Zadrozny
Materials Science · The Ohio State University
This profile was generated automatically from public scholarly data (OpenAlex). Group size and activity levels are estimates derived from co-authorship patterns.
Last updated Jul 20, 2026.
Claim or correct this profile