Biomimetic highly hydrophobic stearic acid functionalized MOF sponge for efficient oil/water separation

The field of oil/water separation has become a global concern with increase in oil/water pollution. Fabrication of highly hydrophobic surfaces by bio mimicking the ‘Lotus effect’ is turning out to be an area of active research in this regard. In current work ZIF-8 functionalized, stearic acid functi...

Full description

Bibliographic Details
Main Authors: Tasmia Azam, Erum Pervaiz, Sarah Farrukh, Tayyaba Noor
Format: Article
Language:English
Published: IOP Publishing 2021-01-01
Series:Materials Research Express
Subjects:
Online Access:https://doi.org/10.1088/2053-1591/abd822
_version_ 1797746765286342656
author Tasmia Azam
Erum Pervaiz
Sarah Farrukh
Tayyaba Noor
author_facet Tasmia Azam
Erum Pervaiz
Sarah Farrukh
Tayyaba Noor
author_sort Tasmia Azam
collection DOAJ
description The field of oil/water separation has become a global concern with increase in oil/water pollution. Fabrication of highly hydrophobic surfaces by bio mimicking the ‘Lotus effect’ is turning out to be an area of active research in this regard. In current work ZIF-8 functionalized, stearic acid functionalized and composite, incorporation ZIF-8 and stearic acid in different deposition sequences, functionalized hydrophobic sponges were fabricated by changing the surface roughness and surface chemistry. The prepared sponges were analyzed by X-ray diffraction, scanning electron microscopy, fourier transmission infrared spectroscopy and sessile drop technique to conform the prerequisite of ‘lotus effect’. The important parameters i.e. water contact angle, oil absorption capacity and reusability of all prepared sponges were compared and it was found that the composite sponge that have first layer of ZIF-8 followed by second layer of stearic acid (S1Z8S) well inherited all properties of its parent components, showed high hydrophobicity with water contact angle of 140.8° and high absorption capacity for different oils/organic solvents ranging from 30.26 to 115.35 times its own weight as compared to other sponge samples and the this value of absorption capacity remained constant for 10 absorption/desorption cycles. Furthermore, it was found that coating another layer of stearic acid (S1S1Z8S) on this hydrophobic sponge increases hydrophobicity to 143.2° because of increase in surface micro-bumps but decreases oil absorption capacity. Being a three in one package with high hydrophobicity, high oil absorption capacity and excellent reusability S1Z8S can be an optimum candidate for large scale practical applications.
first_indexed 2024-03-12T15:42:27Z
format Article
id doaj.art-c3e5aca7453b4bcf9026f1f95772d56c
institution Directory Open Access Journal
issn 2053-1591
language English
last_indexed 2024-03-12T15:42:27Z
publishDate 2021-01-01
publisher IOP Publishing
record_format Article
series Materials Research Express
spelling doaj.art-c3e5aca7453b4bcf9026f1f95772d56c2023-08-09T15:56:28ZengIOP PublishingMaterials Research Express2053-15912021-01-018101501910.1088/2053-1591/abd822Biomimetic highly hydrophobic stearic acid functionalized MOF sponge for efficient oil/water separationTasmia Azam0Erum Pervaiz1https://orcid.org/0000-0003-1498-2167Sarah Farrukh2Tayyaba Noor3https://orcid.org/0000-0002-6689-6837Department of Chemical Engineering, School of Chemical & Materials Engineering (SCME), National University of Sciences & Technology (NUST) , Sector H-12 Islamabad, 44000, PakistanDepartment of Chemical Engineering, School of Chemical & Materials Engineering (SCME), National University of Sciences & Technology (NUST) , Sector H-12 Islamabad, 44000, PakistanDepartment of Chemical Engineering, School of Chemical & Materials Engineering (SCME), National University of Sciences & Technology (NUST) , Sector H-12 Islamabad, 44000, PakistanDepartment of Chemical Engineering, School of Chemical & Materials Engineering (SCME), National University of Sciences & Technology (NUST) , Sector H-12 Islamabad, 44000, PakistanThe field of oil/water separation has become a global concern with increase in oil/water pollution. Fabrication of highly hydrophobic surfaces by bio mimicking the ‘Lotus effect’ is turning out to be an area of active research in this regard. In current work ZIF-8 functionalized, stearic acid functionalized and composite, incorporation ZIF-8 and stearic acid in different deposition sequences, functionalized hydrophobic sponges were fabricated by changing the surface roughness and surface chemistry. The prepared sponges were analyzed by X-ray diffraction, scanning electron microscopy, fourier transmission infrared spectroscopy and sessile drop technique to conform the prerequisite of ‘lotus effect’. The important parameters i.e. water contact angle, oil absorption capacity and reusability of all prepared sponges were compared and it was found that the composite sponge that have first layer of ZIF-8 followed by second layer of stearic acid (S1Z8S) well inherited all properties of its parent components, showed high hydrophobicity with water contact angle of 140.8° and high absorption capacity for different oils/organic solvents ranging from 30.26 to 115.35 times its own weight as compared to other sponge samples and the this value of absorption capacity remained constant for 10 absorption/desorption cycles. Furthermore, it was found that coating another layer of stearic acid (S1S1Z8S) on this hydrophobic sponge increases hydrophobicity to 143.2° because of increase in surface micro-bumps but decreases oil absorption capacity. Being a three in one package with high hydrophobicity, high oil absorption capacity and excellent reusability S1Z8S can be an optimum candidate for large scale practical applications.https://doi.org/10.1088/2053-1591/abd822oil/water separationZIF-8stearic acidhydrophobicpolyurethane spongeoil absorption
spellingShingle Tasmia Azam
Erum Pervaiz
Sarah Farrukh
Tayyaba Noor
Biomimetic highly hydrophobic stearic acid functionalized MOF sponge for efficient oil/water separation
Materials Research Express
oil/water separation
ZIF-8
stearic acid
hydrophobic
polyurethane sponge
oil absorption
title Biomimetic highly hydrophobic stearic acid functionalized MOF sponge for efficient oil/water separation
title_full Biomimetic highly hydrophobic stearic acid functionalized MOF sponge for efficient oil/water separation
title_fullStr Biomimetic highly hydrophobic stearic acid functionalized MOF sponge for efficient oil/water separation
title_full_unstemmed Biomimetic highly hydrophobic stearic acid functionalized MOF sponge for efficient oil/water separation
title_short Biomimetic highly hydrophobic stearic acid functionalized MOF sponge for efficient oil/water separation
title_sort biomimetic highly hydrophobic stearic acid functionalized mof sponge for efficient oil water separation
topic oil/water separation
ZIF-8
stearic acid
hydrophobic
polyurethane sponge
oil absorption
url https://doi.org/10.1088/2053-1591/abd822
work_keys_str_mv AT tasmiaazam biomimetichighlyhydrophobicstearicacidfunctionalizedmofspongeforefficientoilwaterseparation
AT erumpervaiz biomimetichighlyhydrophobicstearicacidfunctionalizedmofspongeforefficientoilwaterseparation
AT sarahfarrukh biomimetichighlyhydrophobicstearicacidfunctionalizedmofspongeforefficientoilwaterseparation
AT tayyabanoor biomimetichighlyhydrophobicstearicacidfunctionalizedmofspongeforefficientoilwaterseparation