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October 5, 2023
Published Online: 2023-10-05
Published in Print: 2023-09-26
©2023 Walter de Gruyter GmbH, Berlin/Boston
Articles in the same Issue
- Frontmatter
- In this issue
- Inorganic Crystal Structures (Original Paper)
- Colloidal nanocrystal synthesis of alkaline earth metal sulfides for solution-processed solar cell contact layers
- Crystal structures of biocompatible Mg-, Zn-, and Co-whitlockites synthesized via one-step hydrothermal reaction
- (Ca0.95Cd0.10)Pd2Cd3, SrPd2Cd3 and (Eu0.95Cd0.10)Pd2Cd3 with YNi2Al3 type structure – crystal chemistry and magnetic hyperfine interactions
- Ni3Sn4 and FeAl2 as vacancy variants of the W-type (“bcc”) structure
- A new layered potassium-based molybdenum–tungsten monophosphate: synthesis, crystal structure, XPS and magnetic studies
- Effect of different boron sources on the copper borates in solid-state synthesis
- Uranyl silicate nanotubules in Rb2[(UO2)2O(Si3O8)]: synthesis and crystal structure
Articles in the same Issue
- Frontmatter
- In this issue
- Inorganic Crystal Structures (Original Paper)
- Colloidal nanocrystal synthesis of alkaline earth metal sulfides for solution-processed solar cell contact layers
- Crystal structures of biocompatible Mg-, Zn-, and Co-whitlockites synthesized via one-step hydrothermal reaction
- (Ca0.95Cd0.10)Pd2Cd3, SrPd2Cd3 and (Eu0.95Cd0.10)Pd2Cd3 with YNi2Al3 type structure – crystal chemistry and magnetic hyperfine interactions
- Ni3Sn4 and FeAl2 as vacancy variants of the W-type (“bcc”) structure
- A new layered potassium-based molybdenum–tungsten monophosphate: synthesis, crystal structure, XPS and magnetic studies
- Effect of different boron sources on the copper borates in solid-state synthesis
- Uranyl silicate nanotubules in Rb2[(UO2)2O(Si3O8)]: synthesis and crystal structure