Institute of Nano Electronic Engineering

Universiti Malaysia Perlis

  • Facebook
  • Instagram
  • Twitter
  • YouTube
  • About Us
    • Background
    • Mission and Vision
    • Organization
    • Client’s Charter
    • Corporate Video
    • Our Expertise
    • Acknowledgement
    • Brochures
  • Academics
    • Master of Science
    • Doctor of Philosophy
    • Postgraduate Students
    • Alumni
  • Research
    • Research Activities
      • Research Areas
      • Research Focus
      • Research Projects
        • Products
      • Collaborations
      • Publications
        • Scoreboard
    • Research Facilities
  • Contact Us
    • Staff Directory
    • Feedback
  • Gallery
    • Video
    • Audio
  • Download
    • Archive
    • Publications
    • Forms
    • OBE Awareness
    • Reports
  • Quick Links
    • Support Links
    • FAQ
    • Sitemap
    • Faculty
    • Other Departments
    • Events

The Characterization Study of Functionalized Multi-Wall Carbon Nanotubes Purified by Acid Oxidation

April 15, 2014 By Editor

Abstract – Acid oxidation is one of the purification method which has been used to open up the caps, removing carbonaceous and metal particles impurities, and attaching functional group (carboxylic groups, -COOH) at the opened caps and MWCNT surfaces. Unfortunately, this method can cause the structural damages of MWCNT, cut them into shorter length and reduced their performance. However, it is reported that the structure damage of CNT can be acceptable if it is not exceeding 4% of damages. Several characterization techniques will be used to study the composition of functionalized MWCNT and measuring the percent damages of functionalized MWCNT.

Keywords – mwcnt, cnt, functionalized

Corresponding Author: Nazree Deraman
Corresponding Author’s Email: nazree@unimap.edu.my

Full text: PDF

Filed Under: Publications Tagged With: CNT, functionalized, multi-wall carbon nanotubes, mwcnt

Nanoparticle sensor for label free detection of swine DNA in mixed biological samples

April 1, 2014 By Editor

Abstract – We used 40 ± 5 nm gold nanoparticles (GNPs) as colorimetric sensor to visually detect swine-specific conserved sequence and nucleotide mismatch in PCR-amplified and non-amplified mitochondrial DNA mixtures to authenticate species. Colloidal GNPs changed color from pinkish-red to gray-purple in 2 mM PBS. Visually observed results were clearly reflected by the dramatic reduction of surface plasmon resonance peak at 530 nm and the appearance of new features in the 620–800 nm regions in their absorption spectra. The particles were stabilized against salt-induced aggregation upon the adsorption of single-stranded DNA. The PCR products, without any additional processing, were hybridized with a 17-base probe prior to exposure to GNPs. At a critical annealing temperature (55 ◦C) that differentiated matched and mismatched base pairing, the probe was hybridized to pig PCR product and dehybridized from the deer product. The dehybridized probe stuck to GNPs to prevent them from salt-induced aggregation and retained their characteristic red color. Hybridization of a 27-nucleotide probe to swine mitochondrial DNA identified them in pork–venison, pork–shad and venison–shad binary admixtures, eliminating the need of PCR amplification. Thus the assay was applied to authenticate species both in PCR-amplified and non-amplified heterogeneous biological samples. The results were determined visually and validated by absorption spectroscopy. The entire assay (hybridization plus visual detection) was performed in less than 10 min. The LOD (for genomic DNA) of the assay was 6 μg ml−1 swine DNA in mixed meat samples. We believe the assay can be applied for species assignment in food analysis, mismatch detection in genetic screening and homology studies between closely related species.

Keywords – nanoparticles, dna, biological

Corresponding Author: Uda Hashim
Corresponding Author’s Email: uda@unimap.edu.my

Full text: PDF

Filed Under: Publications Tagged With: biological, dna, nanoparticles

Effect of FeOx loaded on CoOx/Al2O3 catalyst for the formation of thin-walled carbon nanotubes

February 17, 2014 By Editor

Abstract – Effects of FeOx loaded on CoOx/Al2O3 catalyst on the yield and morphology of the produced carbon nanotubes were studied. The findings showed that the addition of a small amount of FeOx on the CoOx/Al2O3 catalyst provoked the formation of carbon nanotubes with a thin wall structure. The results also revealed that an increase in FeOx content decreased the yield of carbon nanotubes. An optimized weight ratio of CoOx to FeOx was found to be 8:2 (w/w) whereby the catalyst of this composition grew carbon nanotubes with a thin wall structure and not of diminutive carbon yield.

Keywords – carbon nanotubes, catalyst, electron microscopy, methane decomposition

Corresponding Author: Liu Wei Wen
Corresponding Author’s Email: wwliu@unimap.edu.my

Full text: PDF

Filed Under: Publications Tagged With: carbon nanotubes, catalyst, Electron microscopy, methane decompositon

Effect of Manganese Content on the Fabrication of Porous Anodic Alumina

January 21, 2014 By Editor

The influence of manganese content on the formation of well-ordered porous anodic alumina was studied. Porous anodic alumina has been produced on aluminium substrate of different manganese content by single-step anodizing at 50V in 0.3M oxalic acid at 15◦C for 60 minutes. The well-ordered pore and cell structure was revealed by subjecting the porous anodic alumina to oxide dissolution treatment in a mixture of chromic acid and phosphoric acid. It was found that the manganese content above 1wt% impaired the regularity of the cell and pore structure significantly, which can be attributed to the presence of secondary phases in the starting material with manganese content above 1wt%. The pore diameter and interpore distance decreased with the addition of manganese into the substrates. The time variation of current density and the thickness of porous anodic alumina also decreased as a function of the manganese content in the substrates.

Corresponding Author: C.H. Voon
Corresponding Author’s Email: chvoon@unimap.edu.my

Full text: PDF

Filed Under: Publications Tagged With: chromic acid, phosphoric acid, porous anodic alumina

Synthesis of single-walled carbon nanotubes by chemical vapor deposition using sodium chloride support

September 4, 2013 By Editor

Abstract – Bundled single-walled carbon nanotubes (SWCNTs) together with multi-walled carbon nanotubes (MWCNTs) were directly grown on a water-soluble support catalyst that was prepared via sublimation of ferrocene on sodium chloride. The synthesis of nanotubes was carried out at a growth temperature of 700 °C in a combined methane and nitrogen environment of 1:1 volumetric ratio at a total flowrate of 80 ml/min for 1 h in a vertical reactor. Characterization techniques such as scanning electron microscope, transmission electron microscope, thermogravimetric analysis, and Raman spectroscopy were employed to study the carbon deposits. Transmission electron microscope shows the presence of SWCNTs with an average diameter of ca. 1.18 nm on the catalyst. The radial breathing mode (RBM) of Raman for shifts below 350 -1cm further confirmed the presence of SWCNTs and the diameters were calculated to be 0.93, 1.36, 1.5 and 1.85nm.

Keywords – Single-walled carbon nanotubes, Multi-walled carbon nanotubes, Electron microscopy, Raman spectroscopy

Corresponding Author: Liu Wei Wen
Corresponding Author’s Email: wwliu@unimap.edu.my

Full text: PDF

Filed Under: Publications Tagged With: Electron microscopy, Multi-walled carbon nanotubes, Raman spectroscopy, Single-walled carbon nanotubes

  • « Previous Page
  • 1
  • …
  • 8
  • 9
  • 10
  • 11
  • 12
  • 13
  • Next Page »

NEWS @ INEE

  • NanoRoadshow Biotech Exploration – STI 100 Scientists: 100 Schools: 100 Days MOSTI
  • Visit to the Faculty of Science and Trace Analysis and Biosensor COE, Prince of Songkla University
  • Visit and Collaborative Discussion Between INEE, Walailak University, Thailand, and Maejo University Chiang Mai, Thailand
  • Visit by Malaysian Bioeconomy Development Corporation (Bioeconomy Corporation)
  • Staff Retirement Appreciation Ceremony

EVENTS & ACTIVITIES

  • INEE Nano Roadshow – Series 4
  • NanoBiosensor Workshop 2024
  • Invitation To Nanobiosensor Workshop 2024
  • NANO ROADSHOW @ PSNCWU
  • STEM With Community at FESTKON UniMAP 2023
Privacy Policy | Security Policy | Disclaimer | Sitemap | FAQ | Feedback | User Guide | Download | Postgraduate

Institute of Nano Electronic Engineering, Universiti Malaysia Perlis
Lot 106, 108 & 110, Blok A, Taman Pertiwi Indah,
Jalan Kangar-Alor Setar, Seriab 01000 Kangar, Perlis, Malaysia
Tel: +604-979 8581 Fax: +604-979 8578 Email: webmaster.inee@unimap.edu.my

Copyright © INEE UniMAP

  • Facebook
  • Instagram
  • Twitter
  • YouTube

For best view, please use latest version of Internet Explorer, Mozilla Firefox and Google Chrome with resolution 1280 x 768 and above.

BioNexus Partners (BNP)

QS 5 Stars

myGov

Logo UniMAP

Designed by Mohd Isa from Portal Kerjaya & Sumber Rujukan Malaysia

  • Bahasa Melayu