引用本文:
Chao Ma, Peng Guo, Zhongmin Liu. DNL-16: A new zeolitic layered silicate unraveled by three-dimensional electron diffraction[J]. Chinese Journal of Structural Chemistry,
2024, 43(4): 100235.
doi:
10.1016/j.cjsc.2024.100235
Citation: Chao Ma, Peng Guo, Zhongmin Liu. DNL-16: A new zeolitic layered silicate unraveled by three-dimensional electron diffraction[J]. Chinese Journal of Structural Chemistry, 2024, 43(4): 100235. doi: 10.1016/j.cjsc.2024.100235
Citation: Chao Ma, Peng Guo, Zhongmin Liu. DNL-16: A new zeolitic layered silicate unraveled by three-dimensional electron diffraction[J]. Chinese Journal of Structural Chemistry, 2024, 43(4): 100235. doi: 10.1016/j.cjsc.2024.100235
DNL-16: A new zeolitic layered silicate unraveled by three-dimensional electron diffraction
摘要:
In conclusion, we successfully synthesize a novel ZLS, DNL-16, using 1,4-MPBOH as the OSDA. The unique layered structure of DNL-16, characterized by bre CBUs, is intricately unraveled using 3D ED. Further, the precise location of 1,4-MPBOH, situated between adjacent L0 layers of DNL-16, is determined through high-quality PXRD complemented by Rietveld refinement. These findings not only reveal the complex structure of DNL-16 but also lay a foundational groundwork for future investigations into its potential applications.
English
DNL-16: A new zeolitic layered silicate unraveled by three-dimensional electron diffraction
Abstract:
In conclusion, we successfully synthesize a novel ZLS, DNL-16, using 1,4-MPBOH as the OSDA. The unique layered structure of DNL-16, characterized by bre CBUs, is intricately unraveled using 3D ED. Further, the precise location of 1,4-MPBOH, situated between adjacent L0 layers of DNL-16, is determined through high-quality PXRD complemented by Rietveld refinement. These findings not only reveal the complex structure of DNL-16 but also lay a foundational groundwork for future investigations into its potential applications.
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