Suzanna AKIL | semiconductor | Women Researcher Award

Mrs. Suzanna AKIL | Synthesis and self assembly of nanomaterials | Women Researcher Award

Enseignante chercheuse at LCPA2MC, Lorraine University, France.

Dr. Suzanna Akil is an esteemed Assistant Professor at Lorraine University, France, specializing in nanotechnology. Her research focuses on synthesizing plasmonic, semiconductor, and hybrid plasmonic nanomaterials using eco-friendly and high-throughput fabrication techniques. She is particularly interested in their applications in sensing and photocatalysis, contributing significantly to advancing sustainable nanofabrication. Over her extensive career, Dr. Akil has worked on projects related to surface-enhanced Raman scattering (SERS), semiconductor physics, nano-optics, and hybrid plasmonics. She has established strong international collaborations with institutions such as Ural Federal University, Jean Lamour Institute, Lebanese University, Georgia Tech Lorraine, and the University of Technology of Troyes (UTT). Her co-supervision of a Ph.D. project focusing on UV plasmonic nanostructures for biosensing applications highlights her role in mentoring young researchers. With an impressive publication record in prestigious journals like Soft Matter, ChemPhotoChem, Catalysts, and Scientific Reports, Dr. Akil has made significant contributions to nanomaterial science. Her expertise, combined with her commitment to innovation, makes her a leading figure in her field. Through her interdisciplinary approach, she continues to push the boundaries of nanotechnology, bridging the gap between material science and real-world applications.

Professional Profile:

Education

Dr. Suzanna Akil has a strong academic foundation in material science and nanotechnology, which has been instrumental in shaping her research career. She completed her Ph.D. at Lorraine University from 2003 to 2007, where she focused on studying complex coacervation in biopolymer mixtures. This research provided her with a deep understanding of interactions in nano-biopolymer systems, which later became a crucial aspect of her work in nanomaterials. Following her doctoral studies, she pursued postdoctoral research at Lorraine University from 2006 to 2008, where she studied the thermodynamics of interactions in nano-biopolymer systems, further strengthening her expertise in nanostructures. Between 2008 and 2010, Dr. Akil held a teaching and research position at the University of Technology of Troyes (UTT), where she applied plasmonic sensors to biopolymer detection. She continued her postdoctoral research at LNIO-UTT from 2009 to 2010, working on the development of novel SERS sensors for disease diagnostics. From 2010 to 2012, she served as a project researcher at UTT, focusing on the elaboration of 3D nanostructures for functionalizing infrared (IR) detectors. Her extensive educational background and research training have equipped her with the necessary expertise to advance nanomaterial science and its applications in various fields.

Professional Experience

Dr. Suzanna Akil has a distinguished professional career spanning over 15 years in nanotechnology research. Since September 2013, she has been serving as an Assistant Professor in the Nanomaterials team at Jean Barriol Institute, Lorraine University. In this role, she has been actively involved in research, teaching, and mentoring students while developing innovative nanofabrication techniques. Her earlier professional experience includes working as a project researcher at the University of Technology of Troyes (UTT) from 2010 to 2012, where she focused on the elaboration of 3D nanostructures for the functionalization of IR detectors. Prior to that, from 2009 to 2010, she held a postdoctoral research position at LNIO-UTT, contributing to the development of new SERS sensors for disease diagnostics. She also worked as a teaching and research faculty member at UTT between 2008 and 2009, exploring plasmonic sensors for biopolymer detection. Her first postdoctoral role was at Lorraine University from 2006 to 2008, where she investigated thermodynamic interactions in nano-biopolymer systems. Throughout her career, Dr. Akil has been deeply involved in nanomaterials research, securing international collaborations and leading innovative projects that contribute to advancements in biosensing, photocatalysis, and semiconductor physics.

Research Interest

Dr. Suzanna Akil’s research interests lie at the intersection of nanotechnology, materials science, and applied physics. She specializes in the synthesis and characterization of plasmonic, semiconductor, and hybrid plasmonic nanomaterials with a strong focus on their applications in sensing and photocatalysis. Her work aims to develop reproducible, high-throughput, and eco-friendly nanofabrication techniques to improve material performance and sustainability. A significant part of her research is dedicated to surface-enhanced Raman scattering (SERS), where she investigates the use of nanostructures for enhancing molecular detection in biosensing applications. Additionally, she explores the physics of semiconductors, nano-optics, and hybrid plasmonics to create advanced materials for real-world applications. She actively collaborates with institutions like Ural Federal University, Jean Lamour Institute, Lebanese University, Georgia Tech Lorraine, and the University of Technology of Troyes (UTT) to advance her research. Her co-supervision of a Ph.D. project on UV plasmonic nanostructures for biosensing demonstrates her commitment to bridging fundamental research with technological innovation. Dr. Akil’s work is highly interdisciplinary, integrating physics, chemistry, and biology to develop next-generation nanomaterials that have transformative potential in medicine, energy, and environmental sustainability.

Research Skills

Dr. Suzanna Akil possesses a diverse set of research skills that make her a leader in nanotechnology and material science. She is highly proficient in the synthesis and characterization of nanomaterials, particularly plasmonic, semiconductor, and hybrid nanostructures. She has extensive experience in nano-optics and semiconductor physics, which she applies to developing advanced materials for biosensing and photocatalysis. Her expertise in surface-enhanced Raman scattering (SERS) has enabled her to create novel nanostructures that improve molecular detection for disease diagnostics. She is also skilled in thermodynamic analysis of nano-biopolymer interactions, an area she explored during her postdoctoral research. Dr. Akil has strong proficiency in nanofabrication techniques, including the development of high-throughput and eco-friendly synthesis methods. She is adept at collaborative research and interdisciplinary integration, working with international institutions to advance her projects. Additionally, she has experience in mentoring and supervising Ph.D. students, as demonstrated by her co-supervision of a biosensing project at UTT. Her ability to integrate physics, chemistry, and biology into her research allows her to develop cutting-edge nanomaterials with real-world applications.

Awards and Honors

Dr. Suzanna Akil has received significant recognition for her contributions to nanotechnology and materials science. Her research excellence is reflected in her numerous publications in high-impact journals, including Soft Matter, ChemPhotoChem, Catalysts, Langmuir, Journal of Materials Chemistry C, RSC Advances, and Scientific Reports. These publications demonstrate her pioneering work in plasmonic nanostructures and their applications in biosensing and photocatalysis. She has also been involved in major research collaborations with internationally renowned institutions, reinforcing her influence in the scientific community. While specific awards and honors are not listed in her profile, her research accomplishments, leadership in international collaborations, and contributions to advancing sustainable nanofabrication techniques suggest that she has been widely recognized in her field. To further strengthen her academic profile, documenting major awards, patents, or research grants would provide a more comprehensive view of her achievements. Her interdisciplinary approach and commitment to innovation make her a strong candidate for prestigious research awards.

Conclusion

Dr. Suzanna Akil is a distinguished researcher in nanotechnology, making significant contributions to plasmonic and semiconductor nanomaterials. With over 15 years of experience, she has established herself as a leader in high-throughput, eco-friendly nanofabrication techniques, focusing on sensing and photocatalysis applications. Her international collaborations and strong publication record demonstrate her research impact and commitment to advancing the field. While she has an impressive scientific career, further highlighting awards, patents, and research funding could enhance her profile for competitive research awards. Nonetheless, her expertise in nanotechnology, mentorship of Ph.D. students, and interdisciplinary research approach make her an outstanding candidate for the Research for Women Researcher Award. Her dedication to innovation and sustainability ensures that her contributions will continue to influence nanomaterials research for years to come.

Publication Top Notes

  1. Self-Assembled Pd Nanocomposites into a Monolayer for Enhanced Sensing Performance
    📄 Authors: M. Navvabpour, Pierre Michel P.M. Adam, Safi S. Jradi, Suzanna S. Akil
    📅 Year: 2024
    📑 Journal: Coatings
  2. 1D, 2D, and 3D Micropatterning of ZnO Nanoparticles and Nanorod by Two-Photon Polymerization and Surface Functionalization
    📄 Authors: Nawres N. Ghabri, Anisha S. A.S. Gokarna, Ali A. Issa, Gilles G. Lérondel, Safi S. Jradi
    📅 Year: 2024
    📑 Journal: Advanced Materials Technologies

 

Ms. Aran Shin | semiconductor | Best Researcher Award

Ms. Aran Shin | semiconductor | Best Researcher Award

Ms. Aran Shin, Semiconductor Materials Center, Korea Institute of Ceramic Engineering and Technology, South Korea

Shin Aran,  researcher from Tongyeong, South Korea, is currently pursuing a Master’s in Materials Engineering at Pusan National University (expected graduation in 2025). With a strong foundation in semiconductor engineering, she graduated from Gyeongsang National University in 2018. Shin has two years of research experience, having worked at the Korea Institute of Ceramic Engineering and Technology in the Corporate Cooperation Center. Her focus includes HRD and developing cutting-edge materials for various industries. Shin is passionate about innovation and research, contributing to advancements in materials and engineering technologies. 📚🔬💼

Professional Profile:

Google Scholar

Suitability for Best Researcher Award: Shin Aran

Shin Aran, a rising talent in the field of materials engineering, is an excellent candidate for the Best Researcher Award. With her academic background in semiconductor engineering and her current Master’s research in Materials Engineering at Pusan National University, Shin has demonstrated significant potential in the materials science field. Her professional experience at the Korea Institute of Ceramic Engineering and Technology has provided her with practical research skills that contribute to the advancement of cutting-edge materials. Shin’s research focus, combined with her passion for innovation, positions her as a future leader in materials engineering.

Education and Experience

  • 2022.08 – 2025.02: Pusan National University, Graduate School (Master’s), Materials Engineering (Expected Graduation) 🎓
  • 2013.03 – 2018.08: Gyeongsang National University, Department of Semiconductor Engineering (Graduated) 🎓
  • 2020.04 – 2022.04: Korea Institute of Ceramic Engineering and Technology, Corporate Cooperation Center – Researcher/Team Member, HRD (2 years 1 month) 🔬💼

Professional Development

Shin Aran is actively pursuing a Master’s degree in Materials Engineering at Pusan National University, enhancing her expertise in the materials science field. Her work at the Korea Institute of Ceramic Engineering and Technology’s Corporate Cooperation Center has given her practical experience in HRD and research. Shin’s career development has been marked by her commitment to both academic and industrial research, focusing on the improvement and application of advanced materials. Her passion for research, combined with her practical skills, will contribute significantly to her professional growth in materials engineering. 💪📈🔬

Research Focus

Shin Aran’s research primarily focuses on materials engineering, with a specific interest in advanced materials for industrial applications. Her work at the Korea Institute of Ceramic Engineering and Technology’s Corporate Cooperation Center involved human resource development (HRD) while also contributing to cutting-edge research in ceramics and semiconductor technologies. She is driven by the goal of enhancing the functionality and efficiency of materials used in various industries, including semiconductors and ceramics. Shin’s research is pivotal in pushing the boundaries of materials science and engineering to new levels. 🧪🔬⚙️

Publication Top Notes:

“Pre-Melting-Assisted Impurity Control of β-Ga2O3 Single Crystals in Edge-Defined Film-Fed Growth”

 

Dr. young wook park | semiconductor Awards | Best Researcher Award

Dr. young wook park | semiconductor Awards | Best Researcher Award

Dr. young wook park, hanyang university, South Korea

Dr. Young Wook Park is a Research Professor in the Division of Materials Science and Engineering at Hanyang University, a position he has held since July 2021. With extensive industry experience, he served as Vice President at Micron Technology from March 2017 to January 2021 and held the role of Senior Vice President at Samsung Electronics from April 1991 to March 2017. Dr. Park earned his Ph.D. in Materials Science and Engineering from KAIST in 1991, following a Master’s degree in the same field from KAIST in 1988, and a Bachelor’s degree in Metallurgy from Seoul National University in 1986. He has filed over 50 patents in the U.S., highlighting his significant contributions to the field of materials science.

Professional Profile:

Google Scholar

 Dr. Young Wook Park for the Research for Best Researcher Awards

Dr. Young Wook Park’s extensive academic and professional background makes him a highly suitable candidate for the Research for Best Researcher Awards. His experience spans over three decades in the fields of materials science and engineering, particularly within prominent organizations and academic institutions.

🎓Education:

Dr. Young Wook Park earned his Ph.D. in Materials Science and Engineering from KAIST, Korea, in February 1991. He also holds a Master’s degree in the same field from KAIST, which he completed in February 1988. Prior to that, he obtained his Bachelor’s degree in Metallurgy from Seoul National University, Korea, in February 1986.

🏢Work Experience:

Dr. Young Wook Park is currently a Research Professor in the Division of Materials Science and Engineering at Hanyang University, a role he has held since July 2021. Prior to this, he served as Vice President at Micron Technology from March 2017 to January 2021, where he contributed to advancements in semiconductor technology. Before joining Micron, Dr. Park was the Senior Vice President at Samsung Electronics from April 1991 to March 2017, playing a key role in the company’s growth and innovation in the electronics industry.

Publication Top Notes:

  • Title: Method of forming thin film using atomic layer deposition method

    Citations: 230

  • Title: Semiconductor device and method for manufacturing the same

    Citations: 79

  • Title: Methods of forming integrated circuit capacitors having improved electrode and dielectric layer characteristics and capacitors formed thereby

    Citations: 60

  • Title: Novel capacitor technology for high density stand-alone and embedded DRAMs

    Citations: 50

  • Title: Methods of forming integrated circuit capacitors having doped HSG electrodes

    Citations: 46

 

 

Prof. Hyojung Kim | Semiconductor Awards | Outstanding Scientist Award

Prof. Hyojung Kim | Semiconductor Awards | Outstanding Scientist Award

Prof. Hyojung Kim, Sejong University, South Korea

Hyojung Kim, Ph.D. is an Assistant Professor in the Department of Semiconductor Systems Engineering at Sejong University, South Korea. He earned his Ph.D. in Materials Science and Engineering from Seoul National University in February 2021, focusing on resistive switching memory devices utilizing 2D and quasi-2D halide perovskites. With a solid foundation in chemical engineering from Sungkyunkwan University, Dr. Kim has made significant contributions to the field, evidenced by numerous publications in high-impact journals and multiple patents related to resistive switching memory technologies. His research interests include the development of flexible memory devices and FET transistors based on halide perovskites. Dr. Kim has received several accolades, including the YANGSONG Researcher Award and recognition for his top-downloaded article in Physica Status Solidi. He has also presented his findings at various international conferences, showcasing his expertise in advanced memory devices.

Professional Profile:

Orcid

Summary of Suitability for Outstanding Scientist Award: Dr. Hyojung Kim

Overview
Dr. Hyojung Kim is an exemplary candidate for the Outstanding Scientist Award due to his remarkable contributions to the field of semiconductor systems engineering, particularly in the development of advanced memory devices utilizing 2D and quasi-2D halide perovskites. As an Assistant Professor at Sejong University, South Korea, he has demonstrated a commitment to innovation and excellence in research, establishing himself as a leader in his field.

🎓Education:

Hyojung Kim, Ph.D., obtained his Ph.D. in Materials Science and Engineering from Seoul National University, Seoul, South Korea, in February 2021. His doctoral thesis focused on “Resistive Switching Memory Devices based on 2D and Quasi-2D Halide Perovskites,” under the supervision of Ho Won Jang. Prior to this, he completed his Master’s in Chemical Engineering at Sungkyunkwan University, Suwon, South Korea, in February 2013, with a thesis titled “The Study of Pt-free Counter Electrode for Dye-Sensitized Solar Cell,” supervised by Jong Hyeok Park. Dr. Kim also holds a Bachelor’s degree in Chemical Engineering from Sungkyunkwan University, which he received in August 2008.

🏢Work Experience:

Hyojung Kim, Ph.D., served as a Postdoctoral Research Associate at the Davidson School of Chemical Engineering at Purdue University from 2022 to 2023. Prior to this role, he held another postdoctoral position in the Department of Materials Science and Engineering at Seoul National University from 2021 to 2022. Additionally, Dr. Kim gained valuable research experience as an Intern Researcher at the Korea Institute of Science and Technology from 2016 to 2017.

🏅Awards and Recognitions:

Dr. Hyojung Kim has received several prestigious awards, including the YANGSONG Researcher Award from the Korean Ceramic Society in 2021 and the Minister of Trade, Industry and Energy Award in 2020. His research has been recognized for its impact, evidenced by his article being selected as the Top Downloaded Article in Physica Status Solidi in 2022. Additionally, he has earned multiple Best Presentation Awards at various international conferences, highlighting his contributions to the field of materials science and engineering.

Publication Top Notes:

  • Resistive Random-Access Memories Using Quasi-2D Halide Perovskites for Wafer-Scale Reliable Switching Behaviors
  • 2D and Quasi-2D Halide Perovskite-Based Resistive Switching Memory Systems
  • Two-Dimensional Perovskite Heterostructures for Single Crystal Semiconductor Devices