Main Page
Overview
Director's Message
Vision
mission
Objectives
Adminstration
Organization Chart
Advisory Committee
Board of Directors
Executive Committee
Research Fields
Design of Materials
Organic Materials
Semiconductor Materials
Polymers
Catalysis
Colaborations
National
International
Research Facilities
Education
Programs
PhD Program
MSc Program
Training
Publications
Patents
Papers
Books
PhotoAlbum
Researches
Site Map
Contact Us
Map Access
Director's Message
عربي
English
About
Admission
Academic
Research and Innovations
University Life
E-Services
Search
Center of Excellence for Advanced Materials Research
Document Details
Document Type
:
Article In Journal
Document Title
:
Fabrication of chloroform sensor based on hydrothermally prepared low-dimensional β-Fe2O3 nanoparticles
Fabrication of chloroform sensor based on hydrothermally prepared low-dimensional β-Fe2O3 nanoparticles
Subject
:
Chemistry
Document Language
:
English
Abstract
:
Hydrothermally prepared as-grown low-dimensional nano-particles (NPs) have been characterized using UV-vis spectroscopy, Fourier transform infrared (FT-IR) spectroscopy, powder X-ray diffraction (XRD), field emission scanning electron microscopy (FE-SEM), Raman spectroscopy, and electron dispersion spectroscopy (EDS). The uniformity of the nano-material was executed by the scanning electron microscopy, where the single phase of the nano-crystalline β-Fe 2O3 was characterized using XRD techniques. β-Fe 2O3 nanoparticles fabricated glassy carbon electrode (GCE) have improved chloroform-sensing performances in terms of electrical response (I-V technique) for detecting analyte in liquid phase. The analytical performances were investigated, which showed that the better sensitivity, stability, and reproducibility of the sensor improved significantly by using Fe2O3 NPs thin-film on GCE. The calibration plot was linear (R = 0.9785) over the large range of 12.0 μM to 12.0 mM. The sensitivity was calculated as 2.1792 μA cm-2 mM-1 with a detection limit of 4.4 ± 0.10 μM in short response time (10.0 s).
ISSN
:
0749-6036
Journal Name
:
Superlattices and Microstructures
Volume
:
50
Issue Number
:
4
Publishing Year
:
1432 AH
2011 AD
Article Type
:
Article
Added Date
:
Saturday, March 10, 2012
Researchers
Researcher Name (Arabic)
Researcher Name (English)
Researcher Type
Dr Grade
Email
M M Rahman
Rahman, M M
Researcher
Doctorate
A Jamal
Jamal, A
Researcher
Doctorate
شير بهادر خان
Khan, Sher Bahadar
Researcher
Doctorate
Mohd Nishat Faisal
Faisal, Mohd Nishat
Researcher
Doctorate
mdfaisalahsan@gmail.com
Files
File Name
Type
Description
32586.pdf
pdf
Abstract
Back To Researches Page