Please use this identifier to cite or link to this item: http://hdl.handle.net/1942/44782
Title: Mechanochemical synthesis of Calcium-Squarate MOF and encapsulation of hexanal
Authors: Kathuria, Ajay
Bollen, Tuur
Kivy, Mohsen
Hamachi, Leslie
BUNTINX, Mieke 
Auras, Rafael
Issue Date: 2024
Publisher: SPRINGER
Source: Journal of Inclusion Phenomena and Macrocyclic Chemistry,
Status: Early view
Abstract: Porous high surface area supramolecules have been widely researched for controlled delivery and chemical stabilization of active molecular species. Metal-organic frameworks (MOFs), a vast category of high surface area microporous compounds, can be tailored to encapsulate specific active molecules, and control their release kinetics in the headspace of a product-package system for treatment and shelf-life extension of various agricultural produce. Hexanal has been widely reported to reduce post-harvest losses due to its antimicrobial, antifungal, ethylene-modulating, and phospholipase D (PLD) inhibiting characteristics. In this work, we synthesized Calcium-Squarate MOF by a quick simple mechanochemical process using bioderived linkers and non-toxic endogenous cations. We herein report the encapsulation of hexanal in Ca-Squarate MOF, and probe the strength of non-covalent host-guest interactions of hexanal encapsulated in the pores. The synthesized MOF crystals were characterized by thermal analysis, infrared spectroscopy, and diffraction studies. We observed approximately 20% encapsulation of hexanal by weight using thermo-gravimetric analysis. The infrared spectroscopy and simulation study supported the formation of hydrogen bonds between H atoms of hexanal and O atoms of the Ca-Squarate MOF with the strongest binding affinity of -3.81 kcal mol-1. Crystals maintained their porous structure and microscale morphologies post-encapsulation, as observed using X-ray diffraction and scanning electron microscopy. These results are encouraging for the potential use of hexanal encapsulated MOFs in active packaging applications.
Notes: Kathuria, A (corresponding author), Calif Polytech State Univ San Luis Obispo, Ind Technol & Packaging, San Luis Obispo, CA 93407 USA.
akathuri@calpoly.edu
Keywords: Metal organic frameworks;UTSA-280;Ca-Squarate MOF;Active packaging;Inclusion-complex
Document URI: http://hdl.handle.net/1942/44782
ISSN: 1388-3127
e-ISSN: 1573-1111
DOI: 10.1007/s10847-024-01266-w
ISI #: 001350161200001
Rights: The Author(s), under exclusive licence to Springer Nature B.V. 2024
Category: A1
Type: Journal Contribution
Appears in Collections:Research publications

Files in This Item:
File Description SizeFormat 
s10847-024-01266-w.pdf
  Restricted Access
Early view1.65 MBAdobe PDFView/Open    Request a copy
Show full item record

Google ScholarTM

Check

Altmetric


Items in DSpace are protected by copyright, with all rights reserved, unless otherwise indicated.