Xuefei Bai | Spatial Computing | Research Excellence Award

Assoc. Prof. Dr. Xuefei Bai | Spatial Computing | Research Excellence Award

Liaoning University | China

Bai Xuefei is a distinguished researcher specializing in technological innovation, low-carbon economy, and big data analytics. Over recent years, she has published 27 papers and 2 monographs, contributing significantly to academic knowledge in her fields. She has led or participated in 56 research projects at national and provincial/municipal levels, including notable projects such as The Impact of Green Transformation on ESG Performance in Manufacturing Enterprises and industry-focused initiatives like the Premium Service Ecosystem Propelling High-Quality Development of Liaoning’s Pan-Regional Innovation Ecosystem. Bai Xuefei has been recognized for her leadership and expertise, being selected as a Shenyang High-Level Leading Talent and appointed as a Liaoning Provincial Science and Technology Commissioner in 2022. All her publications appear in CSSCI-indexed journals, and she holds editorial responsibilities as an editor of the Journal of Inner Mongolia Minzu University. Her collaborative work includes the Liaoning Strategic Alliance for Industrial Technology Innovation in AI Development for Manufacturing Processes. She actively contributes to the professional community as an executive council member of the Chinese Association of Young Statisticians, council member across several branches of the Chinese Society of Applied Statistics, a member of the Society of Complexity Management of China, and as a review expert for municipal scientific projects and graduate theses. Her research focuses on problem-oriented solutions with real-world social and industrial impact, combining academic rigor with practical innovation. Bai Xuefei has also authored two books (ISBN: 9787509668337; 9787502373597), further establishing her authority in her research domains. Her work bridges theoretical research, applied analytics, and strategic innovation, promoting sustainable development and advanced technological solutions in China. Recognized for her contributions, she demonstrates a consistent commitment to advancing knowledge, mentoring emerging researchers, and fostering interdisciplinary collaboration. Her research and consultancy projects have influenced policy and industrial practices, reflecting her capacity to translate complex analytics and technological insights into actionable strategies for societal and economic development. Academic and research achievements can be verified via her Baidu Scholar profile

 

Profile:  Orcid

Featured Publications 

Fan, X., Guo, Q., & Bai, X. (2025). The Impact of Green Transformation on ESG Performance in Manufacturing Enterprises: Empirical Evidence from Listed Companies in China. Sustainability, 17(24), 10911. https://doi.org/10.3390/su172410911 MDPI+1

Guo, P., Wang, X., Jiang, H., & Bai, X. (2025). Does Digital Transformation Improve Manufacturing ESG Performance: Evidence from China. Sustainability, 17(16), 7278. https://doi.org/10.3390/su17167278 MDPI+1

Bai, X., Guo, Q., & Fan, X. (2024). Green Technology Innovation and Corporate ESG — Evidence Based on Listed Companies in China. Sustainability, 17(4), 1410. https://doi.org/10.3390/su17041410 MDPI

Bai, X., Guo, Q., & Fan, X. (2024). Does ESG Performance Enhance Corporate Green Technological Innovation? Micro Evidence from Chinese‑Listed Companies. Sustainability, 17(2), 636. https://doi.org/10.3390/su17020636

Jendrian Riedel | Immersive Visualization | Research Excellence Award

 Dr. Jendrian Riedel | Immersive Visualization | Research Excellence Award 

Hochschule Bremen | Germany

Dr. Jendrian Riedel is a German biologist specializing in zoology with a strong interdisciplinary focus bridging evolutionary biology, biodiversity research, and bionics innovation. He completed his Diplom (Master’s) in Biology at the University of Bonn in 2013, majoring in Zoology with minors in Palaeontology and Philosophy, reflecting a foundation in both organismal biology and broader scientific thinking. Following this, he pursued a Ph.D. in Natural and Physical Sciences with a focus on Zoology at James Cook University, Australia, under the supervision of Prof. Dr. Lin Schwarzkopf, completing his doctorate in 2020. During his early academic career, Dr. Riedel expanded his research experience internationally, serving as a Guest Scientist at the Department of Evolutionary Biology at Bielefeld University, Germany, in 2020, followed by a postdoctoral position there in 2021. He further deepened his expertise in biodiversity analysis and evolutionary research as a postdoctoral researcher at the Leibniz Institute for the Analysis of Biodiversity Change (LIB) – Museum Koenig Bonn, Germany, from 2022 to 2023. Since 2024, he has been contributing to interdisciplinary research as a researcher at the Core Facility for Multidisciplinary Structural Analysis & Bionics Innovation Center at Hochschule Bremen, Germany, where he applies his knowledge of zoology and structural analysis to advance biomimetic and bionics-driven innovations. Dr. Riedel’s career demonstrates a consistent integration of classical zoological research with contemporary approaches in biodiversity assessment and applied bionics, reflecting both depth in organismal science and a strong commitment to multidisciplinary scientific innovation. His work is characterized by a combination of field-based and laboratory research, international collaborations, and a focus on translating biological insights into technological applications, positioning him as a versatile researcher at the intersection of natural sciences and applied bionics.

Profile: Google Scholar

Featured Publications 

Pillai, R. R., Riedel, J., Wirth, W., Allen-Ankins, S., Nordberg, E., Edwards, W., … (2025). What’s the point? The functional role of claws in pad-bearing taxa (Gekkota: Diplodactylidae). Proceedings B, 292(2054), 20251362.

Kukla, Y., Riedel, J., & Rödder, D. (2025). Sticky innovation, limited expansion: Biogeography and evolutionary ecology of toepads in geckos. Journal of Biogeography, e70087.

Hofmann, S., Rödder, D., Andermann, T., Matschiner, M., Riedel, J., Baniya, C. B., … (2024). Exploring Paleogene Tibet’s warm temperate environments through target enrichment and phylogenetic niche modelling of Himalayan spiny frogs (Paini, Dicroglossidae). Molecular Ecology, 33(15), e17446.

Hofmann, S., Rödder, D., Andermann, T., Matschiner, M., Riedel, J., Baniya, C. B., … (2024). Exploring Paleogene Tibet’s warm temperate environments through target enrichment and phylogenetic niche modelling of Himalayan spiny frogs (Paini, Dicroglossidae). Molecular Ecology, 33(15), e17446.

Riedel, J., Klemm, M., Higham, T., Grismer, L. L., Ziegler, T., Russell, A., Rödder, D., … (2023). Variation in claw morphology among the digits of Bent-toed geckos (Cyrtodactylus: Gekkota: Gekkonidae). BMC Zoology, 8(1), 19.