
Publications of Zhong-Kang Han
All genres
Journal Article (12)
1.
Journal Article
135 (10), e202215728 (2023)
Aufdeckung des Entstehungsmechanismus und Optimierung der Synthesebedingungen von geschichteten Doppelhydroxiden für die Sauerstoffentwicklungsreaktion. Angewandte Chemie 2.
Journal Article
62 (10), e202215728 (2023)
Revealing the Formation Mechanism and Optimizing the Synthesis Conditions of Layered Double Hydroxides for the Oxygen Evolution Reaction. Angewandte Chemie International Edition 3.
Journal Article
138, pp. 157 - 170 (2023)
Evolution of precipitate and precipitate/matrix interface in Al-Zn-Mg-Cu (-Ag) alloys. Journal of Materials Science & Technology 4.
Journal Article
239, 118301 (2022)
Chemical stability and degradation mechanism of Mg3Sb2-xBix thermoelectrics towards room-temperature applications. Acta Materialia 5.
Journal Article
12 (14), pp. 8269 - 8278 (2022)
High-Throughput Screening of Stable Single-Atom Catalysts in CO2 Reduction Reactions. ACS Catalysis 6.
Journal Article
59 (15), pp. 6150 - 6154 (2020)
Water‐Assisted Homolytic Dissociation of Propyne on a Reduced Ceria Surface. Angewandte Chemie International Edition 7.
Journal Article
132 (15), pp. 6206 - 6211 (2020)
Wasserunterstützte homolytische Dissoziation von Propin auf reduzierter Ceroxidoberfläche. Angewandte Chemie 8.
Journal Article
6 (2), 1901141 (2020)
Synergistic Regulation of Phonon and Electronic Properties to Improve the Thermoelectric Performance of Chalcogenide CuIn1−xGaxTe2:yInTe (x = 0–0.3) with In Situ Formed Nanoscale Phase InTe. Advanced Electronic Materials 9.
Journal Article
7, 795 (2019)
Corrigendum: The Structure of Oxygen Vacancies in the Near-Surface of Reduced CeO2 (111) Under Strain. Frontiers in Chemistry 10.
Journal Article
9 (54), pp. 31747 - 31752 (2019)
Co-regulation of the copper vacancy concentration and point defects leading to the enhanced thermoelectric performance of Cu3In5Te9-based chalcogenides. RSC Advances 11.
Journal Article
7, 436 (2019)
The Structure of Oxygen Vacancies in the Near-Surface of Reduced CeO2 (111) Under Strain. Frontiers in Chemistry 12.
Journal Article
2 (3), 035802 (2018)
Unraveling the oxygen vacancy structures at the reduced CeO2(111) surface. Physical Review Materials