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Dive into the research topics where Noor Azwen Noor Azmy is active.

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Featured researches published by Noor Azwen Noor Azmy.


Journal of Nanomaterials | 2014

PANI-Ag-Cu nanocomposite thin films based impedimetric microbial sensor for detection of E. coli bacteria

Huda Abdullah; Norshafadzila Mohammad Naim; Noor Azwen Noor Azmy; Aidil Abdul Hamid

PANI-Ag-Cu nanocomposite thin films were prepared by sol-gel method and deposited on the glass substrate using spin coating technique. Polyaniline was synthesized by chemical oxidative polymerization of aniline monomer in the presence of nitric acid. The films were characterized using XRD, FTIR, and UV-Visible spectroscopy. The performance of the sensor was conducted using electrochemical impedance spectroscopy to obtain the change in impedance of the sensor film before and after incubation with E. coli bacteria in water. The peaks in XRD pattern confirm the presence of Ag and Cu nanoparticles in face-centered cubic structure. FTIR analysis shows the stretching of N-H in the polyaniline structure. The absorption band from UV-Visible spectroscopy shows high peaks between 400nm and 500nm which indicate the presence of Ag and Cu nanoparticles, respectively. Impedance analysis indicates that the change in impedance of the films decreases with the presence of E. coli. The sensitivity on E. coli increases for the sample with high concentration of Cu.


international conference key engineering materials | 2014

Synthesis and Fabrication of PVA-Ag-Cu and PANI-Ag-Cu Nanocomposite Thin Film Sensor for Detection of E. coli in Water

Huda Abdullah; Noor Azwen Noor Azmy; Norshafadzila Mohammad Naim; Aisyah Bolhan; Aidil Abdul Hamid; Sahbudin Shaari

Polymers are excellent host materials for nanoparticles of metals and semiconductors. PVAAgCu nanocomposite was synthesized from chemical reduction, whereas PANIAgCu nanocomposite was synthesized by chemical oxidative polymerization. PVAAgCu and PANIAgCu thin films were deposited on the glass substrate by spin coating technique. The films were characterized by using XRD and AFM. The sensitivity of the samples was analyzed by IV measurement. The peaks in XRD patterns confirm the presence of Ag-Cu nanoparticles in face centered cubic structure. AFM images show the roughness of PVAAgCu and PANIAgCu increased as Ag concentration decreased and Cu concentration increased. I-V measurements indicate that the change in the current of the films increases with the presence of E. coli. The sensitivity on E. coli increases for PVAAgCu and PANIAgCu thin films with high concentration of Cu.


Materials Science Forum | 2016

Fabrication and Characterization of PANI-Ag-Co Nanocomposite Thin Films as Microbial Sensor for E. coli Detection

Norshafadzila Mohammad Naim; Huda Abdullah; Noor Azwen Noor Azmy; Akrajas Ali Umar; Aidil Abdul Hamid; Sahbudin Shaari

Conducting polymers are excellent host materials for nanoparticles of metals and semiconductors. PANI-Ag-Co nanocomposite was prepared by chemical oxidative polymerization of aniline monomer in the presence of nitric acid. PANI-Ag-Co thin films were deposited on the glass substrate using spin-coating technique. The films were characterized by UV-Vis spectroscopy, XRD, AFM and TEM to analyze the internal structure and surface morphology. The performance of the sensor was conducted using I–V measurement to obtain the changes in the current before and after the incubation with E. coli bacteria in water. In UV-visible absorbance bands, a single peak appears at 421.6 nm in each band indicating the Ag-Co alloy nanoparticles were formed. The peaks in the XRD patterns show the crystals are oriented along (111) planes for Ag while (200) plane for Co. AFM images indicate the surface roughness of the PANI-Ag-Co films decreases when the concentration of Co increased. TEM image shows spherical shaped of Ag-Co alloy particles with diameter in the range of 6 – 10 nm. I–V measurements show that the current change of the films increased when incubated in E. coli. The sensitivity on E. coli increases as we increase the Co concentration. PANI-Ag-Co nanocomposite thin films can be explored further for microbial sensor application in future study.


Radiation Physics and Chemistry | 2014

Gamma irradiation effect on the structural, morphology and electrical properties of ZnO-CuO doped PVA nanocomposite thin films for Escherichia coli sensor

Noor Azwen Noor Azmy; Huda Abdullah; Norshafadzila Mohammad Naim; Aidil Abdul Hamid; Sahbudin Shaari; Wan Hanna Melini Wan Mokhtar


Applied Surface Science | 2017

Enhancement of ZnO-rGO nanocomposite thin films by gamma radiation for E. coli sensor

Noor Azwen Noor Azmy; Ahmad Ashrif A. Bakar; Norhana Arsad; Sarada Idris; Abdul Rahman Mohmad; Aidil Abdul Hamid


Journal of Sol-Gel Science and Technology | 2015

Synthesis and fabrication of ZnO–CuO doped PVA and ZnO–PbO doped PVA nanocomposite films by using γ-radiolysis and it’s microbial sensor application

Huda Abdullah; Noor Azwen Noor Azmy; Norshafadzila Mohammad Naim; Aidil Abdul Hamid; Sarada Idris


Arabian Journal for Science and Engineering | 2015

Morphology, Structural and Electrical Properties of Ag–Cu Alloy Nanoparticles Embedded in PVA Matrix and Its Performance as E. coli Monitoring Sensor

Huda Abdullah; Norshafadzila Mohammad Naim; Aisyah Bolhan; Noor Azwen Noor Azmy; Aidil Abdul Hamid


Advanced Materials Research | 2015

Synthesis and Characterization of PVA-Ag Doped Metals (Co, Al) Nanocomposite Thin Films Biosensors for Detection of E. coli in Water

Norshafadzila Mohammad Naim; Huda Abdullah; Noor Azwen Noor Azmy; Aidil Abdul Hamid; Mohd Ambar Yarmo; Akrajas Ali Umar; Sahbudin Shaari; Wan Hanna Melini Wan Mokhtar; Z. Osman


Advanced Materials Research | 2015

Ag-Fe Alloy Nanoparticles Embedded in Polyaniline Nanocomposite Thin Films for E. coli Monitoring Sensor

Huda Abdullah; Norshafadzila Mohammad Naim; Noor Azwen Noor Azmy; Akrajas Ali Umar; Aidil Abdul Hamid; Sahbudin Shaari


Sensors and Actuators B-chemical | 2018

Gamma irradiated Py/PVA for GOx immobilization on tapered optical fiber for glucose biosensing

Sarada Idris; Nur Hidayah Azeman; Noor Azwen Noor Azmy; Chantara Thevy Ratnam; Mohd Adzir Mahdi; Ahmad Ashrif A. Bakar

Collaboration


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Aidil Abdul Hamid

National University of Malaysia

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Huda Abdullah

National University of Malaysia

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Sahbudin Shaari

National University of Malaysia

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Akrajas Ali Umar

National University of Malaysia

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Sarada Idris

Malaysian Nuclear Agency

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Ahmad Ashrif A. Bakar

National University of Malaysia

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Aisyah Bolhan

National University of Malaysia

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Abdul Rahman Mohmad

National University of Malaysia

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