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Journals peer-reviewed by Scopus
Hung, P.T. and Thao, D.T.H. and Hung, N.M. and Van Hoang, N. and Hoat, P.D. and Van Thin, P. and Lee, J.-H. and Heo, Y.-W. (2025) H2S gas sensing properties of ZnO–SnO2 branch–stem nanowires grown on a copper foil. Scripta Materialia, 255.
Vo, V.-K. and Bae, S.-H. and Dang, T.H.T. and Phung, D.H. and Kim, J. and Lee, S. and Lee, N. and Lim, H.-J. and Kim, K.-H. and Lee, J.-H. and Heo, Y.-W. (2024) Tetraoctylammonium Bromide Interlayer between NiLiOx and Perovskite for Light-Emitting Diodes. ACS Applied Materials and Interfaces, 16 (46). pp. 64210-64221.
Hoat, P.D. and Vo, V.K. and Hung, P.T. and Oh, S.-U. and Kim, D. and Lee, J.-H. and Lee, S. and Heo, Y.-W. (2023) Fabrication of Rb2TeI6 thin films for stable, lead-free perovskite photodetector via dry-processed approach. Journal of Alloys and Compounds, 931.
Hoat, P.D. and Vo, V.K. and Bae, S.-H. and Lim, H.-J. and Thao, D.T.H. and Hung, P.T. and Hung, N.M. and Hoang, N.V. and Lee, J.-H. and Heo, Y.-W. (2023) Room-temperature sensing of NH3 gas using CsPbBr3 thin films grown via dual-source evaporation. Journal of Alloys and Compounds, 960. ISSN 09258388
Hoat, P.D. and Yun, Y. and Park, B. and Hung, P.T. and Hien, V.X. and Lee, J.-H. and Lee, S. and Heo, Y.-W.
(2022)
Synthesis of Cs2TeI6 thin film and its NO2 gas-sensing properties under blue-light illumination.
Scripta Materialia, 207: 114305.
ISSN 13596462
Hung, P.T. and Hoat, P.D. and Nguyen, T.-A. and Van Thin, P. and Hien, V.X. and Lim, H.-J. and Lee, S. and Lee, J.-H. and Heo, Y.-W.
(2021)
Growth and NO2 sensing properties of Cs2SnI6 thin film.
Materials Research Bulletin: 111628.
ISSN 255408
(In Press)
Hung, P.T. and Hoat, P.D. and Hien, V.X. and Lee, H.-Y. and Lee, S. and Lee, J.-H. and Kim, J.-J. and Heo, Y.-W.
(2020)
Growth and NO2-Sensing Properties of Biaxial p-SnO/n-ZnO Heterostructured Nanowires.
ACS Applied Materials and Interfaces, 12 (30).
pp. 34274-34282.
ISSN 19448244
Hien, V.X. and Hoat, P.D. and Hung, P.T. and Lee, S. and Lee, J.-H. and Heo, Y.-W.
(2020)
Room-temperature NO2 sensor based on a hybrid nanomaterial of methylammonium tin iodide submicron spheres and tin dioxide nanowires.
Scripta Materialia, 188.
pp. 107-111.
ISSN 13596462