ACS Applied Materials and Interfaces
Journal Abbreviation: ACS APPL MATER INTER
ISSN: 1944-8244
eISSN: 1944-8252
Publisher: American Chemical Society
Publications (265)
Engineered Titanium Oxide Nanoplatform for Targeted Photodynamic/Photothermal-Gas Therapy in Keloid Treatment (2025)
Jin Z, Dai W, Huang Z, Li Q, Zhu Y, Wang W, Xu H
Journal article
Impact of a Thin Sacrificial Mo Layer on the Formation of the Wide Band Gap ACIGSe Absorber/ITO Thin-Film Solar Cell Interface (2025)
Demling A, Gutzler R, Almeida Alves CF, Wilks RG, Félix R, Hariskos D, Paetel S, et al.
Journal article
Electrospun Iridium-Based Nanofiber Catalysts for Oxygen Evolution Reaction: Influence of Calcination on Activity-Stability Relation (2024)
Kovács M, Fritsch B, Lahn L, Bachmann J, Kasian O, Mayrhofer K, Hutzler A, Dworschak D
Journal article
Au Nanoparticles@Si Nanowire Oligomer Arrays for SERS: Dimers Are Best (2024)
Bartschmid T, Menath J, Römling L, Vogel N, Atalay F, Farhadi A, Bourret GR
Journal article
Modifying the Substrate-Dependent Pd/Fe2O3 Catalyst-Support Synergism with ZnO Atomic Layer Deposition (2024)
Shultz-Johnson LR, Rahmani A, Frisch J, Hsieh TE, Hu L, Sosa J, Davy M, et al.
Journal article
Photodegradation of Organic Solar Cells under Visible Light and the Crucial Influence of Its Spectral Composition (2024)
Weitz P, Wortmann J, Liu C, Wen TJ, Li CZ, Heumüller T, Brabec C
Journal article
Thickness Variation of Conductive Polymer Coatings on Si Anodes for the Improved Cycling Stability in Full Pouch Cells (2024)
Stehle P, Langer F, Vrankovic D, Anjass M
Journal article
Erratum: Correction to "Enhanced Photostability of Lead Halide Perovskite Nanocrystals with Mn3+ Incorporation" (ACS applied materials & interfaces (2024) 16 14 DOI: 10.1021/acsami.4c03356.) (2024)
Hu H, Fehn D, Barr M, Harreiß C, Zhao Y, Meyer K, Spiecker E, et al.
Journal article, Erratum
Enhanced Photostability of Lead Halide Perovskite Nanocrystals with Mn3+ Incorporation (2024)
Hu H, Fehn D, Barr M, Harreiß C, Zhao Y, Meyer K, Osvet A, Brabec C
Journal article
Monolithic Two-Terminal Tandem Solar Cells Using Sb2S3 and Solution-Processed PbS Quantum Dots Achieving an Open-Circuit Potential beyond 1.1 V (2024)
Kern S, Yi G, Büttner P, Scheler F, Tran MH, Korenko S, Dehm K, et al.
Journal article, Original article