Prof. Dafna Kariv – Entrepreneurship – Best Researcher Award

Prof. Dafna Kariv - Entrepreneurship - Best Researcher Award

Reichman University - Israel

Author Profile

SCOPUS

Summary

Prof. Dafna Kariv is a distinguished academic and global leader in entrepreneurship education and innovation. her early academic path, rooted in sociology, labor studies, and behavioral sciences, laid the groundwork for a dynamic career spanning israel, europe, and north america. she has held prestigious academic positions, notably at reichman university and hec montreal, and led major initiatives such as the novus entrepreneurship center. her research focuses on entrepreneurship ecosystems, gender dynamics in business, and educational innovation, with conceptual parallels to adaptive systems found in power electronics. prof. kariv has significantly influenced global entrepreneurship curricula, mentoring, and strategic development, contributing to both academic literature and practical innovation frameworks.

šŸ“˜ Early academic pursuits

Prof. Dafna Kariv began her academic journey with a strong foundation in social sciences and education. she earned her bachelor’s degree in sociology and educational management from tel-aviv university in 1985, alongside a teaching certificate from the school of education. she pursued a master’s degree in labor studies at the same institution in 1988, which was instrumental in shaping her Entrepreneurship interdisciplinary approach to entrepreneurship and innovation. her academic dedication culminated in a ph.d. in behavioral sciences from the technion – israel institute of technology in 1999, where she delved into complex systems in organizational behavior, a field conceptually intersecting with power electronics through dynamic system modeling and innovation ecosystems.

šŸ’¼ Professional endeavors

Prof. Kariv’s professional career is marked by leadership in entrepreneurship education and academic administration. from 1999 to 2020, she served at colman, rishon lezion, where she held multiple pivotal roles including chair of the department of entrepreneurship and innovation, and vice president for global initiatives and development. since 2020, she has been the head of the entrepreneurship-business administration track at the adelson school of entrepreneurship, reichman university, herzliya. she is also an affiliate professor at hec montreal, canada, and holds visiting positions in Entrepreneurship esteemed institutions across europe and north america. her leadership has introduced strategic development models, some of which align with frameworks used in power electronics for system integration and scalability.

🧪 Contributions and research focus

Prof. Kariv's research bridges behavioral science, gender, entrepreneurship, and innovation. her work has explored female entrepreneurship, international entrepreneurial ecosystems, and entrepreneurial education frameworks. she has Entrepreneurship established herself as a key thought leader in building innovative incubator and accelerator models, notably as chair of novus at colman. her research often investigates adaptive systems, which bear conceptual similarity to feedback loops in power electronics—underscoring the dynamic behavior of entrepreneurship in diverse environments.

🌐 Impact and influence

Prof. Kariv’s influence spans continents, not only through her teaching at institutions such as mci innsbruck and fh wien in austria, and pula, croatia, but also through her collaborative roles with hec montreal. she has mentored countless students and professionals in building sustainable entrepreneurial ventures. her work on global entrepreneurship strategy has enhanced policy-making and institutional practices, echoing the precision and reliability sought in power electronics circuits when scaling entrepreneurial projects globally.

šŸ“š Academic cites

Prof. Kariv’s scholarly contributions have been widely recognized, with numerous citations in top-tier journals on entrepreneurship, management, and innovation. her books and academic articles serve as core references in entrepreneurship courses worldwide. her extensive teaching engagements have further amplified her presence, positioning her as a central figure in entrepreneurial pedagogy and international education development.

šŸ† Legacy and future contributions

Prof. Kariv continues to shape the future of entrepreneurship education through her academic programs and international collaborations. her future contributions are expected to include the development of cross-disciplinary curricula that integrate behavioral science with emerging technologies—potentially including smart systems and power electronics. her legacy is deeply rooted in nurturing innovation through inclusive, global, and interdisciplinary platforms that empower future generations of entrepreneurs.

Notable Publications

  • Title: Fostering Entrepreneurial Intentions: Exploring the Interplay of Education and Endogenous Factors
    Author(s): Dafna Kariv, Carlo Giglio, Vincenzo Corvello
    Journal: International Entrepreneurship and Management Journal, 2025

  • Title: Embedding the Marketing Angle into the Pursuit of Entrepreneurial Propensity: Roles of Perceived Feasibility and Desirability and Stakeholders' Support
    Author(s): Dafna Kariv, Norris F. Krueger, Luis Cisneros, Gabriela Kashy-Rosenbaum
    Journal: International Journal of Entrepreneurial Behaviour & Research, 2025

  • Title: Entrepreneurship in the Context of Permanent Crisis: The Role of Community Support
    Author(s): David B. Audretsch, Dafna Kariv
    Journal: Review of Managerial Science, 2025

Conclusion

Prof. Kariv’s career represents a unique fusion of academic rigor and practical entrepreneurship, empowering future leaders and transforming global education systems. her legacy lies in building inclusive, interdisciplinary platforms that connect behavioral science, education, and innovation—domains that, like power electronics, require precision, adaptability, and systemic thinking. her ongoing contributions continue to shape the evolving landscape of entrepreneurship with a visionary, international impact.

Dr. Kashinath Lellala – Energy and environmental applications – Best Innovation Award

Dr. Kashinath Lellala - Energy and environmental applications - Best Innovation Award

Xavier University of Louisiana - United States

AUTHOR PROFILEĀ 

SCOPUSĀ 

EARLY ACADEMIC PURSUITS šŸŽ“

Kashinath Lellala’s academic journey began with his M.Sc. in Physics from Kakatiya University, Warangal, Telangana, India, in 2007, where he specialized in electronics. Following this, he pursued an M. Phil. in Physics from Alagappa University, India, in 2013, focusing on thin films and nanotechnology. His research on graphene, particularly in the synthesis and characterization of single-layered graphene by chemical exfoliation, laid the foundation for his future work in nanomaterials. He earned his Ph.D. in Materials Science from the University of Mysore, India, in 2018, under the guidance of Professor K. Byrappa. His doctoral thesis focused on the fabrication and processing of hybrid metal oxide/metal sulfide-graphene oxide nanocomposites and their potential applications in energy and environmental sectors.

PROFESSIONAL ENDEAVORS šŸ’¼

Dr. Lellala has accumulated significant professional experience in both research and teaching. With over 12 years of teaching experience and 9 years of research experience, he has collaborated with various academic and industrial teams to develop advanced materials for energy and environmental applications. His work has encompassed the design and synthesis of efficient catalysts, heterojunction materials for fuel cells, and anode/cathode materials for batteries. He has been a postdoctoral fellow at prestigious institutions, including Lulea University of Technology and the University of South Australia, where he furthered his research in nanomaterials. Currently, he holds multiple editorial board memberships for international journals, showcasing his commitment to the academic community.

CONTRIBUTIONS AND RESEARCH FOCUS šŸ”¬

Dr. Lellala’s research contributions focus on developing advanced functional materials, particularly for energy and environmental applications. His work involves the fabrication of hybrid nanocomposites, combining metal oxides and metal sulfides with graphene oxide, to improve efficiency in various catalytic processes, including photo/electro catalysis, fuel cell reactions, and hydrogen evolution. His research into heterojunction materials for water splitting and energy storage devices, such as Energy and environmental applications batteries, aims to enhance the performance and sustainability of clean energy systems. Through computational work and experimental synthesis, he continues to push the boundaries of materials science in the context of renewable energy.

ACCOLADES AND RECOGNITION šŸ†

Dr. Lellala has been recognized for his contributions to materials science and interdisciplinary research. He was awarded the EMINET Educator Award-2020 by the Forum of Interdisciplinary Research in Mathematical Sciences, India, for his exceptional teaching contributions. In 2020, he received a Certificate of Appreciation for his valuable contributions as a reviewer for the Journal of Cleaner Production. Furthermore, he was honored with the prestigious Caryl Trigger Research Foundation Energy and environmental applications Postdoctoral Fellowship at Lulea University of Technology, Sweden. These accolades highlight his excellence in both research and teaching within his field.

IMPACT AND INFLUENCE šŸŒ

Dr. Lellala’s work has had a significant impact on the field of materials science, particularly in the development of nanomaterials for clean energy applications. His contributions to the fabrication of hybrid nanocomposites have led to advancements in energy storage and conversion technologies. By advancing the understanding of heterojunction materials and catalysts, his research is contributing to the reduction of energy consumption and the improvement of sustainable technologies. His Energy and environmental applications work is influencing the scientific community’s approach to energy materials, particularly in the context of environmental sustainability.

LEGACY AND FUTURE CONTRIBUTIONS 🌟

Looking ahead, Dr. Lellala aims to continue his research on advanced materials for energy applications, particularly in the areas of hydrogen storage, fuel cells, and battery technologies. His work in the integration of nanomaterials for efficient catalytic processes and energy storage devices positions him at the forefront of clean energy solutions. By advancing the scalability and commercial viability of these materials, Dr. Lellala hopes to contribute to the development of sustainable energy solutions that can have a lasting positive impact on global energy systems. His future contributions will likely shape the next generation of energy materials and their applications, advancing both scientific and technological progress in the field.

NOTABLE PUBLICATIONSĀ 

  • Title: Ceria Boosting on In Situ Nitrogen-Doped Graphene Oxide for Efficient Bifunctional ORR/OER Activity
    Authors: Kashinath, L., Byrappa, K.
    Journal: Frontiers in Chemistry, 2022, 10, 889579
  • Title: One-pot microwave synthesis of SnSe and Lanthanum doped SnSe nanostructure with direct Z scheme pattern for excellent photodegradation of organic pollutants
    Authors: Govindan, V., Kashinath, L., Geetha, G.V., Ramasamy, P., Sankaranarayanan, K.
    Journal: Ceramics International, 2022, 48(9), pp. 12228–12239
  • Title: Electrochemical deposition of Si nano-spheres from water contaminated ionic liquid at room temperature: Structural evolution and growth mechanism
    Authors: Vanpariya, A., Lellala, K., Bhagat, D., Mukhopadhyay, I.
    Journal: Journal of Electroanalytical Chemistry, 2022, 910, 116175
  • Title: Sulfur embedded on in-situ carbon nanodisc decorated on graphene sheets for efficient photocatalytic activity and capacitive deionization method for heavy metal removal
    Authors: Lellala, K.
    Journal: Journal of Materials Research and Technology, 2021, 13, pp. 1555–1566
  • Title: Microwave-Assisted Facile Hydrothermal Synthesis of Fe3O4-GO Nanocomposites for the Efficient Bifunctional Electrocatalytic Activity of OER/ORR
    Authors: Lellala, K.
    Journal: Energy and Fuels, 2021, 35(9), pp. 8263–8274