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Dive into the research topics where Hasmerya Maarof is active.

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Featured researches published by Hasmerya Maarof.


Journal of Chemometrics | 2016

Quantitative structure–activity relationship model for prediction study of corrosion inhibition efficiency using two-stage sparse multiple linear regression

Abdo Mohammed Al-Fakih; Zakariya Yahya Algamal; Muhammad Hisyam Lee; Hassan H. Abdallah; Hasmerya Maarof; Madzlan Aziz

A new quantitative structure–activity relationship (QSAR) of the inhibition of mild steel corrosion in 1 M hydrochloric acid using furan derivatives was developed by proposing two‐stage sparse multiple linear regression. The sparse multiple linear regression using ridge penalty and sparse multiple linear regression using elastic net (SMLRE) were used to develop the QSAR model. The results show that the SMLRE‐based model possesses high predictive power compared with sparse multiple linear regression using ridge penalty‐based model according to the mean‐squared errors for both training and test datasets, leave‐one‐out internal validation (Q2int = 0.98), and external validation (Q2ext = 0.95). In addition, the results of applicability domain assessment using the leverage approach reveal a reliable and robust SMLRE‐based model. In conclusion, the developed QSAR model using SMLRE can be efficiently used in the studies of corrosion inhibition efficiency. Copyright


Chirality | 2015

Chiral Separation of Four Stereoisomers of Ketoconazole Drugs Using Capillary Electrophoresis

Wan Aini Wan Ibrahim; Siti Rosilah Arsad; Hasmerya Maarof; Mohd Marsin Sanagi; Hassan Y. Aboul-Enein

This work aimed to develop a chiral separation method of ketoconazole enantiomers using electrokinetic chromatography. The separation was achieved using heptakis (2, 3, 6-tri-O-methyl)-β-cyclodextrin (TMβCD), a commonly used chiral selector (CS), as it is relatively inexpensive and has a low UV absorbance in addition to an anionic surfactant, sodium dodecyl sulfate (SDS). The influence of TMβCD concentration, phosphate buffer concentration, SDS concentration, buffer pH, and applied voltage were investigated. The optimum conditions for chiral separation of ketoconazole was achieved using 10 mM phosphate buffer at pH 2.5 containing 20 mM TMβCD, 5 mM SDS, and 1.0% (v/v) methanol with an applied voltage of 25 kV at 25 °C with a 5-s injection time (hydrodynamic injection). The four ketoconazole stereoisomers were successfully resolved for the first time within 17 min (total analysis time was 28 min including capillary conditioning). The migration time precision of this method was examined to give repeatability and reproducibility with RSDs ≤5.80% (n =3) and RSDs ≤8.88% (n =9), respectively.


Chirality | 2016

Theoretical and Molecular Docking Study of Ketoconazole on Heptakis(2,3,6-tri-O-methyl)-β-cyclodextrin as Chiral Selector

Siti Rosilah Arsad; Hasmerya Maarof; Wan Aini Wan Ibrahim; Hassan Y. Aboul-Enein

A molecular docking study, using molecular mechanics calculations with AutoDock and semi-empirical PM3 calculations, was used to predict the enantiodiscrimination of heptakis(2,3,6-tri-O-methyl)-β-cyclodextrin (TMβCD) and ketoconazole (KTZ) enantiomers. A Density Functional Theory (DFT) single-point calculation at the level of B3LYP/6-311G (d,p) was performed for the PM3-optimized complexes to obtain more accurate binding energy and the electronic structures of the complexes. The difference in energies of the inclusion complexes between the KTZ enantiomers and TMβCD is probably a measure of chiral discrimination, which results in the separation of the enantiomers as observed in the experimental studies.


International Journal of Educational Management | 2012

Reading behaviors of students in Kolej Datin Seri Endon (KDSE)

Mohini Mohamed; Roshanida A. Rahman; Lee Chew Tin; Haslenda Hashim; Hasmerya Maarof; Noor Sharliana Mat Nasir; Siti Nazrah Zailani; Siti Marsilawati Mohamed Esivan; Nur Fazirah Jumari

Purpose – This is an exploratory study of reading behaviors and interest among students residing in a female residential college of Kolej Datin Seri Endon (KDSE), Universiti Teknologi Malaysia (UTM) and the use of reading stations (RS) placed at strategic locations throughout the main campus. The UTMs Vice Chancellor project of developing various RS was to promote a reading culture in UTM. Currently there are 48 RS in the main campus of Skudai and ten more in UTM International campus. Most of the books were donated by UTM staff and students themselves.Design/methodology/approach – Using simple random sampling, 187 students were selected from a population of 1,300 female students. The survey instrument was designed in the form of structured questionnaire comprising a series of close‐ended and open‐ended questions design. A team of researcher investigated and evaluated at least 15 Reading Stations through out the campus.Findings – The findings highlighted some factors related to reading habits and interest...


Journal of Theoretical and Computational Chemistry | 2016

Behavioral pattern exploration of single guest, hexadecane-1,16-diol and hexadecane in urea inclusion compounds via molecular dynamics simulation

Siti Fatimah Zaharah Mustafa; Hasmerya Maarof; Mohammed Abu Naser; Hassan H. Abdallah; Ahmad Irfan; R. Ahmed

The urea inclusion compounds, a unique polar organic crystalline complex, are considered as a potential candidate for a molecular separator of long chain alkane molecule. A well-defined structure of the crystalline channel systems constructed from hydrogen bonding arrangement of the urea molecules, can be used to understand the fundamental aspects of the processes involving ions or molecules transportation. To do so, in our work, molecular dynamics approach is implemented to understand the behavioral pattern of the hexadecane-1,16-diol and hexadecane guests’ related to translational and rotational orientation along the urea tunnel. Our obtained results reveal that high interaction of hexadecane-1,16-diol with urea host molecules offers a restricted environment inside urea tunnel, resulting in slowing down the guest movement. Hexadecane guest system, on the contrary, exhibits lower interaction whereby the translational and rotational movement is faster. Moreover, as the distance increases (along c-axis) in the urea tunnel, both guest systems favor a clockwise rotational orientation. Preference of the respected orientation indicates the influence of chiral urea tunnel on achiral guests that is clathrate inside the tunnel structure.


Journal of Physical Chemistry B | 2018

Influence of Solvent on the Drug-Loading Process of Amphiphilic Nanogel Star Polymers

Amber C. Carr; Victoria A. Piunova; Hasmerya Maarof; Julia E. Rice; William C. Swope

We present an all-atom molecular dynamics study of the effect of a range of organic solvents (dichloromethane, diethyl ether, toluene, methanol, dimethyl sulfoxide, and tetrahydrofuran) on the conformations of a nanogel star polymeric nanoparticle with solvophobic and solvophilic structural elements. These nanoparticles are of particular interest for drug delivery applications. As drug loading generally takes place in an organic solvent, this work serves to provide insight into the factors controlling the early steps of that process. Our work suggests that nanoparticle conformational structure is highly sensitive to the choice of solvent, providing avenues for further study as well as predictions for both computational and experimental explorations of the drug-loading process. Our findings suggest that when used in the drug-loading process, dichloromethane, tetrahydrofuran, and toluene allow for a more extensive and increased drug-loading into the interior of nanogel star polymers of the composition studied here. In contrast, methanol is more likely to support shallow or surface loading and, consequently, faster drug release rates. Finally, diethyl ether should not work in a formulation process since none of the regions of the nanogel star polymer appear to be sufficiently solvated by it.


Journal of Molecular Modeling | 2016

Diffusional behavior and guest conformational analysis of hexadecane-1,16-diol and hexadecane in urea crystal model via molecular dynamics simulation approach

Siti Fatimah Zaharah Mustafa; Hasmerya Maarof; R. Ahmed; Hassan H. Abdallah

Diffusion at the atomic or molecular level is a source of many physical, chemical, and biological processes taking place in plentiful materials. This work is an endeavor toward investigating the diffusional behavior of two different type of guests, hexadecane-1,16-diol and hexadecane enclathration in urea tunnel architecture, whereby the correlation of the diffusion mechanism with the guest’s structural and conformational properties is explored. To carry out this study, molecular dynamics simulation approach is adopted. It is found that hexadecane-1,16-diol exhibit slower diffusion with an average diffusion coefficient value ~1.83×10-10


International Journal of Electrochemical Science | 2015

High dimensional QSAR study of mild steel corrosion inhibition in acidic medium by furan derivatives

Abdo Mohammed Al-Fakih; Madzlan Aziz; Hassan H. Abdallah; Zakariya Yahya Algamal; Muhammad Hisyam Lee; Hasmerya Maarof


International Journal of Electrochemical Science | 2015

Computational Evaluation of the Effect of Structural Parameters of 3-Flouro Thiophene and 3-thiophene Malonic Acid on Corrosion Inhibition Efficiency of Mild Steel in Acidic Media

Bishir Usman; Hasmerya Maarof; Hassan H. Abdallah; Madzlan Aziz

\sim 1.83\times {10}^{-10}


Journal of Cleaner Production | 2018

Design of energy efficient reactive solvents for post combustion CO 2 capture using computer aided approach

Muhammad Zulhilmi Ahmad; Haslenda Hashim; Azizul Azri Mustaffa; Hasmerya Maarof; Nor Alafiza Yunus

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Madzlan Aziz

Universiti Teknologi Malaysia

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Rosmahaida Jamaludin

Universiti Teknologi Malaysia

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Muhammad Hisyam Lee

Universiti Teknologi Malaysia

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R. Ahmed

Universiti Teknologi Malaysia

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Siti Rosilah Arsad

Universiti Teknologi Malaysia

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Wan Aini Wan Ibrahim

Universiti Teknologi Malaysia

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