• 186 Citations
20132019
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Fingerprint Dive into the research topics where Ionut C. Tranca is active. These topic labels come from the works of this person. Together they form a unique fingerprint.

  • 1 Similar Profiles
Zeolites Chemical Compounds
Discrete Fourier transforms Chemical Compounds
Cycloaddition Chemical Compounds
Electronic structure Chemical Compounds
Oxygen Chemical Compounds
glutamic acid Physics & Astronomy
Chemical bonds Chemical Compounds
Self assembly Chemical Compounds

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Research Output 2013 2019

  • 186 Citations
  • 24 Article
  • 2 Chapter

Absolute energy level positions in tin- and lead-based halide perovskites

Tao, S., Schmidt, I., Brocks, G., Jiang, J., Tranca, I., Meerholz, K. & Olthof, S., 12 Jun 2019, In : Nature Communications. 10, 10 p., 2560

Research output: Contribution to journalArticleAcademicpeer-review

Open Access
File
Tin
perovskites
Optoelectronic devices
Electron energy levels
halides

A database approach for materials selection for hydrogen storage in aerospace technology

Coppola, C. M., Tolbatov, I., Tranca, I., Coletti, C., Marrone, A., Storchi, L., Di Profio, P., Re, N., Kazandjian, M. V., Pellecchia, A., Longo, S., Gaastra-Nedea, S. V., Fernandez-Villace, V. & Longo, J., Jun 2019, In : Rendiconti Lincei. Scienze Fisische e Naturali. 30, 2, p. 287–296

Research output: Contribution to journalArticleAcademicpeer-review

Hydrogen storage
Hydrates
Aerospace applications
Aerospace industry
Hydrogen
1 Citation (Scopus)

Correlations between Density-Based Bond Orders and Orbital-Based Bond Energies for Chemical Bonding Analysis

Rohling, R. Y., Tranca, I. C., Hensen, E. J. M. & Pidko, E. A., 7 Feb 2019, In : Journal of Physical Chemistry C. 123, 5, p. 2843-2854 12 p.

Research output: Contribution to journalArticleAcademicpeer-review

Open Access
File
Chemical bonds
Electronic structure
chemical bonds
orbitals
Crystals

Tin, the enabler—hydrogen diffusion into ruthenium

Onwudinanti, C., Tranca, I., Morgan, T. & Tao, S., 21 Jan 2019, In : Nanomaterials. 9, 1, 18 p., 129

Research output: Contribution to journalArticleAcademicpeer-review

Open Access
File
Ruthenium
Tin
Hydrogen
Atoms
Extreme ultraviolet lithography

Tuning the hematite (110) surface properties to enhance its efficiency in photoelectrochemistry

Podsiadły-Paszkowska, A., Tranca, I. & Szyja, B. M., 13 Feb 2019, In : Journal of Physical Chemistry C. 123, 9, p. 5401-5410

Research output: Contribution to journalArticleAcademicpeer-review

photoelectrochemistry
Hematite
hematite
surface properties
Surface properties