Melike Babucci
Postdoctoral position at Department of Materials Science and Engineering; Solar Cell Technology
- Telephone:
- +46 18 471 32 32
- E-mail:
- melike.babucci@angstrom.uu.se
- Visiting address:
- Ångströmlaboratoriet, Regementsvägen 10
- Postal address:
- Box 35
751 03 UPPSALA
- ORCID:
- 0000-0001-7785-3755

Publications
Recent publications
Part of ACS Applied Energy Materials, p. 461-472, 2024
- DOI for In Situ Studies of Atomic Layer Deposition of Hafnium Oxide on (Ag,Cu)(In,Ga)Se2 for Thin Film Solar Cells
- Download full text (pdf) of In Situ Studies of Atomic Layer Deposition of Hafnium Oxide on (Ag,Cu)(In,Ga)Se2 for Thin Film Solar Cells
Part of ACS Applied Electronic Materials, p. 7989-7999, 2024
- DOI for Studies of Atomic-Layer-Deposited Zn1-X SnXOY as an Alternative Buffer Layer for Cu2Zn(Sn1-X ,GeX)S4 Thin-Film Solar Cells
- Download full text (pdf) of Studies of Atomic-Layer-Deposited Zn1-X SnXOY as an Alternative Buffer Layer for Cu2Zn(Sn1-X ,GeX)S4 Thin-Film Solar Cells
Part of Nature Energy, p. 467-478, 2024
- DOI for High-concentration silver alloying and steep back-contact gallium grading enabling copper indium gallium selenide solar cell with 23.6% efficiency
- Download full text (pdf) of High-concentration silver alloying and steep back-contact gallium grading enabling copper indium gallium selenide solar cell with 23.6% efficiency
Part of Solar Energy Materials and Solar Cells, 2024
Part of Thin Solid Films, 2024
All publications
Articles in journal
Part of ACS Applied Energy Materials, p. 461-472, 2024
- DOI for In Situ Studies of Atomic Layer Deposition of Hafnium Oxide on (Ag,Cu)(In,Ga)Se2 for Thin Film Solar Cells
- Download full text (pdf) of In Situ Studies of Atomic Layer Deposition of Hafnium Oxide on (Ag,Cu)(In,Ga)Se2 for Thin Film Solar Cells
Part of ACS Applied Electronic Materials, p. 7989-7999, 2024
- DOI for Studies of Atomic-Layer-Deposited Zn1-X SnXOY as an Alternative Buffer Layer for Cu2Zn(Sn1-X ,GeX)S4 Thin-Film Solar Cells
- Download full text (pdf) of Studies of Atomic-Layer-Deposited Zn1-X SnXOY as an Alternative Buffer Layer for Cu2Zn(Sn1-X ,GeX)S4 Thin-Film Solar Cells
Part of Nature Energy, p. 467-478, 2024
- DOI for High-concentration silver alloying and steep back-contact gallium grading enabling copper indium gallium selenide solar cell with 23.6% efficiency
- Download full text (pdf) of High-concentration silver alloying and steep back-contact gallium grading enabling copper indium gallium selenide solar cell with 23.6% efficiency
Part of Solar Energy Materials and Solar Cells, 2024
Part of Thin Solid Films, 2024
Part of Physica Status Solidi (a) applications and materials science, 2024
- DOI for Properties of the Interface Between the Atomic Layer Grown Zinc-Tin-Oxide and Cu2ZnGeS4 Relevant for Kesterite Thin-Film Solar Cells
- Download full text (pdf) of Properties of the Interface Between the Atomic Layer Grown Zinc-Tin-Oxide and Cu2ZnGeS4 Relevant for Kesterite Thin-Film Solar Cells
Part of ACS Applied Energy Materials, p. 9264-9275, 2023
Part of ACS Catalysis, p. 11177-11189, 2022
Part of ACS Applied Energy Materials, p. 13971-13980, 2022
- DOI for Atomic Layer Grown Zinc-Tin Oxide as an Alternative Buffer Layer for Cu2ZnSnS4-Based Thin Film Solar Cells: Influence of Absorber Surface Treatment on Buffer Layer Growth
- Download full text (pdf) of Atomic Layer Grown Zinc-Tin Oxide as an Alternative Buffer Layer for Cu2ZnSnS4-Based Thin Film Solar Cells: Influence of Absorber Surface Treatment on Buffer Layer Growth
Ultrathin wide band gap kesterites
Part of Faraday discussions, p. 38-50, 2022
- DOI for Ultrathin wide band gap kesterites
- Download full text (pdf) of Ultrathin wide band gap kesterites
Part of The Journal of Physical Chemistry C, p. 16995-17007, 2021
Part of Journal of the American Chemical Society, p. 12165-12174, 2021
Electronic Structure of Atomically Dispersed Supported Iridium Catalyst Controls Iridium Aggregation
Part of ACS Catalysis, p. 12354-12358, 2020
Part of Journal of Catalysis, p. 165-172, 2020
Part of Journal of the American Chemical Society, p. 8044-8056, 2020
The Surface Chemistry of Metal Oxide Clusters: From Metal–Organic Frameworks to Minerals
Part of ACS Central Science, p. 1523-1533, 2020
- DOI for The Surface Chemistry of Metal Oxide Clusters: From Metal–Organic Frameworks to Minerals
- Download full text (pdf) of The Surface Chemistry of Metal Oxide Clusters: From Metal–Organic Frameworks to Minerals
Part of ACS Applied Materials and Interfaces, p. 53537-53546, 2020
Part of Journal of Catalysis, p. 186-195, 2020
Part of Chemical Reviews, p. 11956-11985, 2020
Part of ACS Catalysis, p. 9905-9913, 2019
Part of Chemical Science, p. 2623-2632, 2019
- DOI for Controlling catalytic activity and selectivity for partial hydrogenation by tuning the environment around active sites in iridium complexes bonded to supports
- Download full text (pdf) of Controlling catalytic activity and selectivity for partial hydrogenation by tuning the environment around active sites in iridium complexes bonded to supports
Part of Journal of the American Chemical Society, p. 18142-18151, 2019
Tuning the Selectivity of Single-Site Supported Metal Catalysts with Ionic Liquids
Part of ACS Catalysis, p. 6969-6972, 2017
Part of Journal of Molecular Liquids, p. 293-297, 2016
Interactions of [BMIM][BF4] with Metal Oxides and Their Consequences on Stability Limits
Part of The Journal of Physical Chemistry C, p. 20089-20102, 2016
Part of Chemical Engineering Science, p. 588-595, 2015
Thermal Stability Limits of Imidazolium Ionic Liquids Immobilized on Metal-Oxides
Part of Langmuir, p. 9163-9176, 2015