A
PROFILE
UPM's Staff Profile
PROF. MADYA DR. MOHD NAZIM BIN MOHTAR
DEPUTY DIRECTOR
MALAYSIAN RESEARCH INSTITUTE ON AGEING (MYAGEING™)
nazim@upm.edu.my
nazim
BM
EN

PROFESSIONAL

NAME :
(Prof. Madya Dr.) MOHD NAZIM BIN MOHTAR
MANAGERIAL POSITION :
DEPUTY DIRECTOR
ENTITY :
MALAYSIAN RESEARCH INSTITUTE ON AGEING (MYAGEING™)

PERMANENT POST :
ASSOCIATE PROFESSOR
ENTITY :
FACULTY OF ENGINEERING

FIELD OF SUPERVISION
ADVANCED MATERIALS / BIOMEDICAL ENGINEERING / ELECTRONIC ENGINEERING / GERONTECHNOLOGY / SENSOR TECHNOLOGY


PUBLICATION
2023
Characterization and Conductivity Studies of Graphene Oxide with Different Degrees of Oxidizing Agent
2023
Charge Carrier Mobility of Organic Thin Film Transistor: Intrinsic and Extrinsic Influencing Factors Based on Organic Semiconducting Materials
2022
Effects of Polymerization Time towards Conductivity and Properties of Poly(methyl methacrylate)/Polyaniline (PMMA/PANi) Copolymer
2022
Evolution of solution-based organic thin-film transistor for healthcare monitoring– from device to circuit integration: A review
2021
Characterization and selective deposition of carbon nanotubes from carbon nanoparticles mixture using mild acid treatment and electrokinetic manipulation
2021
Synthesis and Conductivity Studies of Poly (Methylmethacrylate) (PMMA) By Co-polymerization and Blending with Polyaniline (PANi)
2021
Characterization and Conductivity Studies of graphene oxide (GO) with Different Degrees of Oxidizing Agent
2020
Modification of PPy-NW Anode by Carbon Dots for High-performance Minimicrobial Fuel Cells
2019
Synthetic graphite production of oil palm trunk chip at various heating rate via pyrolisis process
2018
Hybrid Systems for Robotic Navigations
2018
Automated Monitoring System for Transmission System Laboratory Model
2017
Analysis of Air Humidity and Temperature for Post Lightning Circumstances
2016
Effect of Interelectrode Gap to the Manipulations of Particle Using AC Electroosmosis
2016
Effect of interelectrode gap to the manipulations of particle using AC electroosmosis
2014
Factors affecting particle collection by electro-osmosis in microfluidic systems