Author/Authors :
Zainal Abidin, Nur Husna Faculty of Applied Sciences - Universiti Teknologi MARA - Shah Alam - Selangor, Malaysia , Wan Ibrahim, Wan Nazihah Faculty of Applied Sciences - Universiti Teknologi MARA - Shah Alam - Selangor, Malaysia , Mohamad Hanapi, Nor Suhaila Faculty of Applied Sciences - Universiti Teknologi MARA - Shah Alam - Selangor, Malaysia , Hadzir, Nursyamsyila Mat Faculty of Applied Sciences - Universiti Teknologi MARA - Shah Alam - Selangor, Malaysia , Abdul Karim, Siti Kartina Universiti Teknologi MARA - Sarawak Branch - Samarahan 2 Campus - Kota Samarahan, Sarawak , Yahaya, Noorfatimah Universiti Sains Malaysia - Bertam Kepala Batas - Penang, Malaysia , Kamaruzaman, Sazlinda Department of Chemistry - Faculty of Science - Universiti Putra Malaysia - Serdang - Selangor, Malaysia
Abstract :
A mesoporous silica SBA-15/iron oxide (Fe3O4-SBA-15) nanocomposite was fabricated and employed as a magnetic
solid-phase extraction (MSPE) sorbent to determine three types of organophosphorus pesticides (OPPs) in fruit samples. The
fabricated nanocomposite was analysed by high-performance liquid chromatography using ultraviolet detector (HPLC-UV).
Meanwhile, the optimisation of extraction efficiency on three OPPs analyses used three different parameters, viz. desorption
conditions, extraction time, and sorbent amount. The experimental results showed that the Fe3O4-SBA-15 nanocomposite
achieved high analyte recoveries ranging from 89-118% with a relative deviation of less than 8.0%. By combining the
optimised MSPE conditions with HPLC-UV, a suitable method for determining three OPPs was developed. This study
revealed that the proposed method exhibits good coefficients of determination varying from 0.9942 to 0.9980, with low limit
detection (LODs) ranging from 0.03-0.08 mg l-1 and low limit quantifications (LOQs) of 0.10-0.24 mg l-1. Based on these
findings, the fabricated Fe3O4-SBA-15 nanocomposite is a suitable sorbent with excellent adsorption capacity for the selected
OPPs from fruit matrices.
Keywords :
Magnetic solid-phase extraction , Mesoporous silica nanocomposite , Magnetite , Organophosphorus pesticides , Fruit samples