Published January 18, 2025 | Version v1

Shedding Electrons On ADOR Zeolite Structures – Structure Determination By 3DED

  • 1. Department of Physical and Macromolecular Chemistry, Faculty of Science, Charles University, Prague, Czechia

Description

Three-dimensional electron diffraction (3DED) offers a powerful alternative to single-crystal X-ray diffraction
(SCXRD) for the structure determination of crystalline materials with small-sized crystals (usually nanometresized)
or crystals with intergrowths, often produced during zeolite synthesis. ADOR is a synthesis strategy of
novel daughter zeolites from well-known parent germanosilicates. Structure determination of such ADOR zeolites
is challenging due to the presence of aggregated intergrowths, and often small-sized crystals. This work
demonstrates the application of continuous rotation electron diffraction (cRED), a type of 3DED, for the rapid
structural characterisation of zeolites produced by ADOR approach. cRED can be performed in a transmission
electron microscope and the structure of a studied material can be obtained rapidly. We propose a unified workflow
for the structure determination of ADOR daughter materials. This workflow involves the initial structural investigation
and determination of the parent material, followed by the utilization of this knowledge to facilitate
the subsequent structure determination of the daughter material. Investigation strategy was shown to be uniform,
as presented for ADOR transformation of two different parent germanosilicates. This approach is a tool allowing
prompt recognition of new ADOR zeolites at the early stage of their synthesis and can be used for a feedback-
based optimisation of synthesis conditions.

Notes (English)

 
CCDCC 2410737-2410741 contain the supplementary crystallographic
data for this paper. These data can be obtained free of charge from The
Cambridge Crystallographic Data Centre via www.ccdc.cam.ac.uk/
structures.
 
Supplementary data to this article can be found online at https://doi.org/10.1016/j.micromeso.2025.113514.

Notes (English)

M.M. acknowledges the Czech Science Foundation for the EXPRO
project no. 19-27551X. The work was supported from ERDF/ESF project
TECHSCALE (No.CZ.02.01.01/00/22_008/0004587). The infrastructure
obtained thanks to OP VVV "Excellent Research Teams", project
no. CZ.02.1.01/0.0/0.0/15_003/0000417 – CUCAM, was used in
this study. D.N.R. thanks Stef Smeets and the Xiaodong Zou group, especially
Zhehao Huang, Hongyi Xu, and Jungyoun Cho, for their help
and introduction to the cRED method. IWV and IPC-20 samples were
provided by doc. Maksym Opanasenko. The authors acknowledge the
Viničná Microscopy Core Facility (VMCF of the Faculty of Science,
Charles University), a facility supported by MEYS CR (LM2023050
Czech-BioImaging), for their support and assistance with this work.

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Additional details

Dates

Submitted
2024-10-31
Accepted
2024-12-29
Available
2025-01-18