dr. norhayati binti abu bakar

pensyarah universiti

institut kejuruteraan mikro & nanoelektronik (imen)

 norhayati.ab@ukm.edu.my



   Biografi/ Biography :

  • Saya menamatkan pengajian Sarjana (2011) dan PhD (2015) dalam bidang Kejuruteraan Mikro dan Nanoelektronik di Universiti Kebangsaan Malaysia. Telah mendapat anugerah Tesis Sarjana Cemerlang untuk kajian pembangunan sensor pendar cahaya untuk mengesan racun prosak di dalam air. Kajian Phd berkaitan pembangunan sensor serakan Raman permukaan diperkuat untuk mengesan bisphenol A telah mendapat excellent PhD thesis remarks oleh penilai luar. Saya telah menjalankan program sangkutan selama 7 bulan di Flinders University of South Australia, Adelaide dan menjalankan kerjasama untuk projek PhD dengan bantuan travel grant dari Flinders University. Saya kini merupakan pensyarah di UKM dan merupakan ahli kumpulan Organik Elektronik di Institut Kejuruteraan Mikro dan Nanoelektronik, UKM. Penyelidikan yang dijalankan adalah penyediaan dan pencirian filem nipis untuk peranti elektronik, sensor optic, biosensor plasmonik dan bahan bersaiz nano.
    Norhayati has completed Masters in Micro and Nanoelectronics from Universiti Kebangsaan Malaysia (UKM) in 2011 and awarded the Excellent Master Thesis Award from the university based on Master research work on the development of a fluorescent sensor system to detect pesticides in water using quantum dots thin films. In December 2015, she completed PhD which focused on the development of a surface-enhanced Raman scattering sensor to detect bisphenol A using silver nanoplates substrates and later received excellent PhD thesis remarks by the external examiner from Universiti Malaysia Perlis for this research work. In addition, she undertook work at Flinders University of South Australia, Adelaide for seven months for SERS research using travel researcher scheme funding from Flinders University. She is currently a senior lecturer at UKM and a member of Organic and Printed Electronic Group at Institute of Microengineering and Nanoelectronics. Current research interests include the preparation and characterization of thin films for electronic devices, optical sensors, plasmonic biosensor, and nanomaterials.

  • nur nazhifah yusoff, farah shahadah nor azmi, norhayati abu bakar, tengku hasnan tengku abdul aziz, joseph george shapter.  (2024).  titanium carbide mxene/silver nanostars composite as sers substrate for thiram pesticide detection.  - chemical papers.  2855-2865. 

     

    norhayati abu bakar, joseph george shapter.  (2024).  surface-enhanced raman spectroscopy (sers) substrate based on gold nanostars-silver nanostars for imidacloprid detection.  - australian journal of chemistry.  1-10. 

     

    norhayati abu bakar, marco fronzi, joseph george shapter.  (2024).  surface-enhanced raman spectroscopy using a silver nanostar substrate for neonicotinoid pesticides detection.  - sensors.  1-14. 

     

    tengku hasnan bin tengku abdul aziz;ahmad rifqi bin md zain;norhayati binti abu bakar.  (2024).  enhancement of photoluminescence intensity of graphene quantum dots using surface plasmon resonance of gold nanorods.  -

     

    norhayati abu bakar; joseph g. shapter.  (2023).  silver nanostar films for surface-enhanced raman spectroscopy (sers) of the pesticide imidacloprid.  - heliyon.  1-8. 

     

    norhayati abu bakar, marco fronzi, joseph george shapter.  (2024).  surface-enhanced raman spectroscopy using a silver nanostar substrate for neonicotinoid pesticides detection.  - sensors.  1-14. 

     

    norhayati abu bakar; joseph g. shapter.  (2023).  silver nanostar films for surface-enhanced raman spectroscopy (sers) of the pesticide imidacloprid.  - heliyon.  1-8. 

     

    norhayati abu bakar, joseph george shapter.  (2024).  surface-enhanced raman spectroscopy (sers) substrate based on gold nanostars-silver nanostars for imidacloprid detection.  - australian journal of chemistry.  1-10. 

     

    nur nazhifah yusoff, farah shahadah nor azmi, norhayati abu bakar, tengku hasnan tengku abdul aziz, joseph george shapter.  (2024).  titanium carbide mxene/silver nanostars composite as sers substrate for thiram pesticide detection.  - chemical papers.  2855-2865. 

     

    norhayati abu bakar, akrajas ali umar, muhamad mat salleh.  (2019).  reka bentuk sensor pendar cahaya bintik kuantum zncdse untuk mengesan racun perosak.  - sains malaysiana.  1513-1518. 

     

    nur nazhifah yusoff, farah shahadah nor azmi, norhayati abu bakar, tengku hasnan tengku abdul aziz, joseph george shapter.  (2024).  titanium carbide mxene/silver nanostars composite as sers substrate for thiram pesticide detection.  - chemical papers.  2855-2865. 

     

    norhayati abu bakar, joseph george shapter.  (2024).  surface-enhanced raman spectroscopy (sers) substrate based on gold nanostars-silver nanostars for imidacloprid detection.  - australian journal of chemistry.  1-10. 

     

    norhayati abu bakar, marco fronzi, joseph george shapter.  (2024).  surface-enhanced raman spectroscopy using a silver nanostar substrate for neonicotinoid pesticides detection.  - sensors.  1-14. 

     

    norhayati abu bakar; joseph g. shapter.  (2023).  silver nanostar films for surface-enhanced raman spectroscopy (sers) of the pesticide imidacloprid.  - heliyon.  1-8. 

     

    nur zehan an nisa, marlia morsin, rahmat sanudin, nur liyana razali, suratun nafisah,norhayati abu bakar.  (2019).  high sensitivity plasmonic based on triclopyr butotyl herbicide sensor using gold nanorods (gnrs) as sensing material.  - asm science journal.  139-146. 

     

    norhayati abu bakar, nur adliha abdullah, akrajas ali umar, muhamad mat salleh, joseph george shapter.  (2019).  effect of silver concentration towards formation of agpt nanofern films as sers substrates.  - fourth international conference on science and technology (materials science forum).  231-236. 

     

    norhayati abu bakar, muhamad mat salleh, akrajas ali umar and joseph george shapter.  (2018).  effect of surface density silver nanoplate films toward surface-enhanced raman scattering enhancement for bisphenol a detection.  - journal of physics: conference series (3rd international symposium on frontier of applied physics, isfap 2017). 

     

    tengku hasnan bin tengku abdul aziz;ahmad rifqi bin md zain;norhayati binti abu bakar.  (2024).  enhancement of photoluminescence intensity of graphene quantum dots using surface plasmon resonance of gold nanorods.  -

     

    norhayati abu bakar, nur nazhifah yusoff, farah shahadah nor azmi, joseph george shapter.  (2023).  inside front cover: a review of metal nanoparticle-based surface-enhanced raman scattering substrates for severe acute respiratory syndrome coronavirus 2 (sars-cov-2) detection.  - -. 

     

    p. susthitha menon a/p n v visvanathan;pankaj kumar choudhury;mohd ambri bin mohamed;norhayati binti abu bakar.  (2023).  kretschmann-based electrochemical surface plasmon resonance(k-ecspr) hybrid biosensor for kidney-related disease.  -

     

    suhaila binti sepeai;mohd adib bin ibrahim;norasikin binti ahmad ludin;mohd asri bin mat teridi;saleem hussain zaidi;norhayati binti abu bakar.  (2020).  silicon-perovskite tandem heterojunction: emerging approach for higher efficiency solar cell.  -

     

    norhayati binti abu bakar;muhamad bin mat salleh.  (2020).  fabrication of ag/tio2 nanocomposites thin films as ultra-sensitive surface-enhanced raman scattering (sers) substrates.  -