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Updated: Jan 17, 2026

Synthesis of Zeolites Using the ADOR Assembly-Disassembly-Organization-Reassembly Route
Published on: April 3, 2016
Tailoring Zn-based zeolitic imidazolate frameworks via Ni substitution: a strategy for enhanced selective alcohol
Panyapat Ponchai1, Kanyaporn Adpakpang1, Yollada Inchongkol1
1School of Energy Science and Engineering, Vidyasirimedhi Institute of Science and Technology, 555 Moo 1 Payupnai, Wangchan, Rayong 21210, Thailand. sareeya.b@vistec.ac.th.
Abstract:
A stable four-coordinated nickel node has been successfully incorporated into a Zn-based zeolitic imidazolate framework (ZIF-8) via a facile one-pot synthesis at room temperature. By tuning the Ni/Zn ratios, the resulting physicochemical properties have been verified. The incorporation of Ni has led to improved alcohol separation compared to the single metal structure. The Ni-substituted ZIF-8, denoted as ZnNi, demonstrates selective adsorption and separation of alcohol molecules based on size and molecular interaction, effectively capturing trace methanol from ethanol mixtures. The partial substitution of ZnN4 with Ni introduces additional Ni centers and enhanced microporosity, which are potentially the key to such performance. These findings provide valuable insights into the development of mixed-metal organic frameworks for separation applications.
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Alcohols can be synthesized from alkyl halides via nucleophilic substitution reactions. The highly polar carbon-halogen bond in the substrate makes halide a good leaving group. The hydroxide ion or water can act as a nucleophile to take the place of halide and form an alcohol. The substitution reactions occur via two different reaction pathways, SN1 or SN2, depending on the nature of carbon attached to the halide.
Primary alcohols are synthesized from primary alkyl halides, and the...

