pensyarah universiti
institut sel fuel (selfuel)
akidah@ukm.edu.my
                                                              Teknologi Digital dan Terkehadapan,
                                                              Sumber Lestari, Alam Sekitar dan Kehidupan Pintar,
                                                            
                                  Prof. Madya Dr. Nurul Akidah Baharuddin ialah seorang Profesor Madya dan Felo Penyelidik di Institut Sel Fuel, Universiti Kebangsaan Malaysia (UKM). Beliau merupakan pakar yang diiktiraf dalam bidang Sel Fuel Oksida Pepejal (SOFC), dengan fokus pada bahan termaju, fabrikasi sel, dan pengoptimuman prestasi. Beliau telah menghasilkan beberapa paten berkaitan dengan teknologi SOFC dan mengetuai geran pembangunan prototaip. Dr. Nurul Akidah juga giat dalam usaha bagi kerjasama antara industri-akademia dan terlibat secara aktif dalam membentuk piawaian teknikal serta polisi untuk tenaga hidrogen dan sel fuel di Malaysia.                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                 
                                  Associate Professor Dr. Nurul Akidah Baharuddin is an Associate Professor and Research Fellow at the Fuel Cell Institute, Universiti Kebangsaan Malaysia (UKM). She is a recognized expert in Solid Oxide Fuel Cells (SOFCs), focusing on advanced materials, cell fabrication, and performance optimization. She has developed several patents related to SOFC technology and leads a prototype development grant. Dr. Nurul Akidah is also active in fostering industry-academia collaborations and is actively involved in shaping technical standards and policies for hydrogen energy and fuel cells in Malaysia.                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                          
ainaa nadhirah zainon, nurul akidah baharuddin, bee huah lim, wan nor anasuhah wan yusoff, wan syakirah wan abdullah, jarot raharjo. (2026). biofuels in solid oxide fuel cell systems: a review of production, applications, challenges, and future prospects. - fuel. 1 - 14.
ili-mastura mashudi, afifah z. juri, nurul akidah baharuddin. (2025). tailoring thermal expansion characteristic of srfe1-xtixo3-d cathodes through ti doping for intermediate-temperature solid oxide fuel cell application. - high temperatures - high pressures. 333 - 341.
ili-mastura mashudi, nurul akidah baharuddin. (2025). hydrogen energy and hydrogen production: a review of and advancement and challenges within the sustainable energylandscape. - international conference on sustainable energy and green technology 2025 (segt 2025). .
muhammad amirul mamsor, nurul akidah baharuddin, nur wardah norman, mahendra rao somalu.. (2025). preliminary investigation into the formation of lico0.8m0.2o2 (m = zr, ca) as triple-conducting oxide cathodes for solid oxide fuel cells. - materiali in tehnologije. 75 - 81.
nur syafiqah alisa mohd nizam, rozan mohamad yunus, mahendra rao somalu, nurul akidah baharuddin*. (2025). organic complexing agents in catalysts synthesis for hydrogen and fuel cell applications. - international conference on sustainable energy and green technology 2025 (segt 2025). .
ainaa nadhirah zainon, nurul akidah baharuddin, bee huah lim, wan nor anasuhah wan yusoff, wan syakirah wan abdullah, jarot raharjo. (2026). biofuels in solid oxide fuel cell systems: a review of production, applications, challenges, and future prospects. - fuel. 1 - 14.
iswary letchumanan, wei shi ng, mohd shahbudin masdar, azim fitri zainul abidin, nurul akidah baharuddin, rozan mohamad yunus. (2025). implications for oxygen evolution spinel-based electrocatalyst in anion exchange membrane water electrolyser: a review from structural engineering perspective. - journal of alloys and compounds. 1 - 24.
annanthan narayanasamy, nurul akidah baharuddin, afifah z juri. (2025). review of tribological considerations in solid oxide fuel cells. - tribology international. 1 - 12.
annanthan narayanasamy, nurul akidah baharuddin, azim fitri zainul abidin, wan nor anasuhah wan yusoff, elankovan a. sundararajan, mahendra rao somalu . (2025). density functional theory modeling of pr and b-site promoters (pd, ti and ru) doping effects on oxygen vacancy formation in perovskite solid oxide fuel cell anodes. - materials letters. 1 - 4.
ainaa nadhirah zainon, nurul akidah baharuddin, audi majdan kamarul bahrain, mahendra rao somalu, s. a. muhammed ali. (2025). optimizing ruddlesden-popper perovskite anodes, la0.6sr1.4mn0.9x0.1o4 (x = ni and fe) for solid oxide fuel cell application: a comparative study on structural, morphological, and electrochemical performance. - ceramics international. 7742 - 7755.
muhammad amirul mamsor, nurul akidah baharuddin, nur wardah norman, mahendra rao somalu.. (2025). preliminary investigation into the formation of lico0.8m0.2o2 (m = zr, ca) as triple-conducting oxide cathodes for solid oxide fuel cells. - materiali in tehnologije. 75 - 81.
nur syafa qahiera abd halim , nurul akidah baharuddin, rozan mohamad yunus , wan nor anasuhah wan yusoff , mahendra rao somalu . (2025). sintering of spinel catalysts for solid oxide fuel cell applications: a review of the microstructure, conductivity, and electrochemical performance. - ceramics-silikáty. 517 - 533.
ili-mastura mashudi, afifah z. juri, nurul akidah baharuddin. (2025). tailoring thermal expansion characteristic of srfe1-xtixo3-d cathodes through ti doping for intermediate-temperature solid oxide fuel cell application. - high temperatures - high pressures. 333 - 341.
azreen junaida abd aziz, nurul akidah baharuddin, rasyikah md. khalid, siti kartom kamarudin. (2024). review of the policies and development programs for renewable energy in malaysia: progress, achievements and challenges. - energy exploration & exploitation. 1472-1501.
azreen junaida abd aziz, nurul akidah baharuddin, mahendra rao somalu, andanastuti muchtar, sahrim haji ahmad. (2023). kesan suhu pensinteran terhadap mikrostruktur dan sifat mekanikal perovskit seramik srfe0.9ti0.1o3-d-sdc. - sains malaysiana. 1303-1314.
ainaa nadhirah zainon, nurul akidah baharuddin, bee huah lim, wan nor anasuhah wan yusoff, wan syakirah wan abdullah, jarot raharjo. (2026). biofuels in solid oxide fuel cell systems: a review of production, applications, challenges, and future prospects. - fuel. 1 - 14.
annanthan narayanasamy, nurul akidah baharuddin, afifah z juri. (2025). review of tribological considerations in solid oxide fuel cells. - tribology international. 1 - 12.
ili-mastura mashudi, afifah z. juri, nurul akidah baharuddin. (2025). tailoring thermal expansion characteristic of srfe1-xtixo3-d cathodes through ti doping for intermediate-temperature solid oxide fuel cell application. - high temperatures - high pressures. 333 - 341.
annanthan narayanasamy, nurul akidah baharuddin, azim fitri zainul abidin, wan nor anasuhah wan yusoff, elankovan a. sundararajan, mahendra rao somalu . (2025). density functional theory modeling of pr and b-site promoters (pd, ti and ru) doping effects on oxygen vacancy formation in perovskite solid oxide fuel cell anodes. - materials letters. 1 - 4.
ainaa nadhirah zainon, nurul akidah baharuddin, audi majdan kamarul bahrain, mahendra rao somalu, s. a. muhammed ali. (2025). optimizing ruddlesden-popper perovskite anodes, la0.6sr1.4mn0.9x0.1o4 (x = ni and fe) for solid oxide fuel cell application: a comparative study on structural, morphological, and electrochemical performance. - ceramics international. 7742 - 7755.
isyraf aznam; andanastuti muchtar; mahendra rao somalu; nurul akidah baharuddin. (2025). hydrogen production via methane pyrolysis using ni–cu– mn spinel catalysts for hydrocarbon-fuelled solid oxide fuel cell applications. - aip conference proceedings. 20047 - 20047.
azreen junaida abd aziz; wan nor anasuhah wan yusoff; nurul akidah baharuddin; mahendra rao somalu; andanastuti muchtar. (2025). influence of sintering temperature on the microstructural and electrochemical behaviours of srfe0.9ti0.1o3-d–ce0.8sm0.2o1.9 composite cathode for solid-oxide fuel cells. - aip conference proceedings. 20027 - 20027.
wan nor anasuhah wan yusoff; nurul akidah baharuddin; mahendra rao somalu; nigel peter brandon; andanastuti muchtar; muhammed ali shaikh abdul kader abdul hameed. (2025). high conductivity lithiated electrode for symmetrical solid oxide fuel cell. - aip conference proceedings. 20041 - 20041.
wan nor anasuhah wanyusoff, nurul akidah baharuddin, mahendra rao somalu, nigel p. brandon. (2023). preliminary assessment of ru-doped linio2 as a dual-functioning electrode for solid oxide fuel cells. - 2023 13th international conference on power, energy and electrical engineering, cpeee 2023. 337-341.
wan nor anasuhah wan yusoff, nurul akidah baharuddin, mahendra rao somalu, andanastuti muchtar. (2022). synthesis and preliminary study of the multilayer lico0.6ni0.4o2 as solid oxide fuel cell cathode. - 4th international symposium on advanced materials and nanotechnology (isamn 2020). 1-7.
josé luis clabel huamán, nurul akidah baharuddin, mohd ambri mohamed, abdullah abdul samat, hamimah abd rahman, euclydes marega junior. (2024). recent advances in perovskite ceramics: synthesis, processing, and applications. - amrt. 47-112.
nurul akidah baharuddin, hamimah abd rahman, abdullah abdul samat, nafisah osman, nur syafkeena mohd affandi, suhaida dila safian. (2023). perovskite-structured ceramics in solid oxide fuel cell application. - advanced ceramic materials. 221-249.
ainaa nadhirah zainon, nurul akidah baharuddin, mahendra rao somalu. (2025). unsur nadir bumi: sumber penjanaan tenaga hijau. - . .
azreen junaida abd aziz, nurul akidah baharuddin, mahendra rao somalu, andanastuti muchtar. (2024). unsur nadir bumi (unb) asas kepada penjanaan tenaga elektrik melalui peranti sel fuel oksida pepejal (sofc). - majalah impak. 17.
nurul akidah baharuddin, lim bee huah, ryan yeo yow zhong . (2024). panduan pengisian istar aktiviti pelajar pascasiswazah institut sel fuel . - . .
azreen junaida abd aziz, nurul akidah baharuddin. (2023). tenaga hijau merungkai potensi teknologi sel bahan api oksida pepejal. - dewan kosmik. 32-35.
azreen junaida abd aziz, nurul akidah baharuddin, mahendra rao somalu, andanastuti muchtar, sahrim haji ahmad. (2023). kesan suhu pensinteran terhadap mikrostruktur dan sifat mekanikal perovskit seramik srfe0.9ti0.1o3-d-sdc. - sains malaysiana. 1303-1314.
ili-mastura mashudi, nurul akidah baharuddin. (2025). hydrogen energy and hydrogen production: a review of and advancement and challenges within the sustainable energylandscape. - international conference on sustainable energy and green technology 2025 (segt 2025). .
nur syafiqah alisa mohd nizam, rozan mohamad yunus, mahendra rao somalu, nurul akidah baharuddin*. (2025). organic complexing agents in catalysts synthesis for hydrogen and fuel cell applications. - international conference on sustainable energy and green technology 2025 (segt 2025). .
nur syafa qahiera abd halim, nurul akidah baharuddin, rozan mohamad yunus, mahendra rao somalu. (2025). unlocking intermediate-temperature fuel cell potential with ni0.4cu0.6mn2o4 spinel oxides. - international conference on sustainable energy and green technology 2025 (segt 2025). .
ainaa nadhirah zainon, nurul akidah baharuddin, wan nor anasuhah wan yusoff, lim bee huah. (2025). the impact of calcination temperature on la0.6sr1.4mn0.8ni0.2o4 ruddlesden-popper perovskite anodes for solid oxide fuel cells: structural, microstructural, and electrochemical performance. - international conference on sustainable energy and green technology 2025 (segt 2025). .
wan nor anasuhah wan yusoff , nurul akidah baharuddin, lim bee huah, mohd shahbudin masdar. (2025). effect of anode fuel on the maximum power density of the lini0.6ru0.4o2 based symmetrical-solid oxide fuel cell. - international conference on sustainable energy and green technology 2025 (segt 2025). .
| Geran / Grant | Kolaborator / Collaborator | Status | 
|---|---|---|
| DESIGN AND PRODUCTION OF PEROVSKITE-BASED ELECTRODE CATALYST THROUGH IN-SITU EXSOLUTION OF NANOPARTICLES FOR SOLID OXIDE FUEL (SOFC) AND ELECTROLYZERS (SOEC) APPLICATIONS | lynas malaysia sdn bhd | 27.7% (2025-01-01 sehingga 2027-12-31) | 
ENERGY & GREEN TECHNOLOGY :TECHNOLOGY AND ENGINEERING
                                Solid Oxide Fuel Cell, Fuel Cell Technology, Hydrogen Energy
                                Pengalaman / Experience : 5 tahun/years(s) 
                                                              
MECHANICAL AND MANUFACTURING :TECHNOLOGY AND ENGINEERING
                                Mechanical Engineering
                                Pengalaman / Experience : 5 tahun/years(s) 
                                                              
MATERIAL AND POLYMER :TECHNOLOGY AND ENGINEERING
                                Advanced Materials
                                Pengalaman / Experience : 5 tahun/years(s) 
                                                              
MATERIALS SCIENCE :PURE AND APPLIED SCIENCES
                                Ceramic-based Materials
                                Pengalaman / Experience : 5 tahun/years(s)