2DAMP: the novel of (2D)-Aminoethyl Methacrylate Perovskite for ammonia gas sensor

Adli, Hasyiya Karimah and Mat Yunin, Muhamad Yuzaini Azrai and Mohd Adenam, Norfatihah and Ab Ghani, Hadhrami (2023) 2DAMP: the novel of (2D)-Aminoethyl Methacrylate Perovskite for ammonia gas sensor. International Exhibition & Symposium On Productivity, Innovation, Knowledge & Education. pp. 283-288. ISSN 9789672948568

Official URL: https://ispike.uitm.edu.my

Abstract

2DAMP is a novel class of materials based on (2D)-Aminoethyl Methacrylate Perovskite with better stability and great potential for the ammonia gas sensor. 2DAMP is introduced as a strategy to promote and explore a sustainable green economy. Malaysian government recognises ammonia as a gaseous and vaporous inorganic substance (Category 4) under the Environmental Quality (Clean Air) Regulations 2014, in which the primary source of ammonia usually comes from intensive livestock production and industrial activity. The exploration of 2DAMP towards SDG 3 (Good Health and Well-Being), as we believe that this material advancement will lead to the creation of sustainable communities. Besides, it will contribute to comfortable environments through the provision of sensor products that consider energy and environmental conservation. In conclusion, 2DAMP is a novelty product with easy and lowcost production for the future of material sensors.

Metadata

Item Type: Article
Creators:
Creators
Email / ID Num.
Adli, Hasyiya Karimah
hasyiya@umk.edu.my
Mat Yunin, Muhamad Yuzaini Azrai
azrai9795@gmail.com
Mohd Adenam, Norfatihah
norfatihah.mohdadenam@gmail.com
Ab Ghani, Hadhrami
hadhrami.ag@umk.edu.my
Contributors:
Contribution
Name
Email / ID Num.
Advisor
Said, Roshima
roshima712@uitm.edu.my
Chief Editor
Yusoff, Siti Norfazlina
fazlina836@uitm.edu.my
Subjects: Q Science > QD Chemistry
T Technology > TA Engineering. Civil engineering
Divisions: Universiti Teknologi MARA, Kedah > Sg Petani Campus
Journal or Publication Title: International Exhibition & Symposium On Productivity, Innovation, Knowledge & Education
ISSN: 9789672948568
Page Range: pp. 283-288
Keywords: Perovskite, Stability, ammonia, Sensor
Date: 2023
URI: https://ir.uitm.edu.my/id/eprint/126960
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