Dr. Ke Liu – High-value utilization of steel slag – Best Researcher Award

Dr. Ke Liu - High-value utilization of steel slag - Best Researcher Award

University of Science ang Technology Beijing - China 

Author Profile 

SCOPUS 

Early academic pursuits 🎓

Ke Liu embarked on his academic journey in the field of metallurgical engineering, driven by a passion for materials science and sustainability. he completed his bachelor's degree at north china university of science and technology in 2017, where he gained foundational knowledge in metallurgy. continuing his pursuit of excellence, he obtained a master's degree from the same university in 2020, focusing on innovative applications in metallurgical processes. his academic aspirations led him to pursue a ph.d. at the university of science and technology beijing, where he delved deeper into solid waste resource utilization, heat energy storage, and co2 recycling. his dedication and academic excellence further earned him a prestigious opportunity to conduct joint doctoral research at the university of tokyo, japan, from 2023 to 2024, expanding his expertise in advanced materials engineering.

Professional endeavors 💼

Throughout his academic career, ke liu has been actively involved in high-impact research initiatives addressing critical challenges in metallurgy and environmental sustainability. his research has spanned diverse domains, including the development of innovative phase change materials, electrochemistry, and sewage resource treatment. his professional engagements have provided him with international exposure and the opportunity to collaborate with leading researchers in japan and china. these collaborations have enriched his expertise in material characterization and energy storage applications, paving the way for groundbreaking advancements in metallurgical engineering.

Contributions and research focus 🔬

Ke Liu's research focuses on solid waste resource utilization, aiming to transform industrial waste into valuable materials. his work in phase change energy storage materials has led to the High-value utilization of steel slag development of innovative composite materials derived from steel slag, providing sustainable and efficient energy storage solutions. additionally, he has explored co2 recycling strategies, contributing to the reduction of carbon emissions in industrial processes. his expertise in electrochemistry has also enabled advancements in sewage resource treatment, developing efficient methods for water purification and waste management. through his pioneering research, ke liu is making significant strides in creating environmentally friendly and cost-effective solutions for industrial sustainability.

Accolades and recognition 🏆

Ke Liu’s research excellence is reflected in his multiple publications in high-impact, q1 and q2 journals. his work has been featured in leading scientific journals such as the journal of energy High-value utilization of steel slag storage, ceramics international, and the journal of co2 utilization, with impressive impact factors ranging from 5.2 to 9.4. his contributions to phase change materials and steel slag utilization have been widely recognized in the scientific community, positioning him as a rising researcher in metallurgical engineering. his growing citation count and international collaborations further attest to the impact and significance of his research endeavors.

Impact and influence 🌍

Ke Liu's research has profound implications for sustainable industrial practices, particularly in the metallurgical sector. his work in developing energy-efficient phase change materials High-value utilization of steel slag contributes to improved heat energy storage solutions, crucial for renewable energy applications. his advancements in co2 recycling provide valuable insights into reducing greenhouse gas emissions, aligning with global sustainability goals. by transforming steel slag waste into useful composite materials, he has paved the way for more efficient waste management strategies. his research not only advances scientific knowledge but also holds practical significance for industries seeking sustainable alternatives.

Legacy and future contributions 💡

As a dedicated researcher, ke liu continues to push the boundaries of metallurgical engineering with his innovative approaches to material science and environmental sustainability. his ongoing work aims to further enhance the efficiency of phase change materials and explore new methods for sustainable resource utilization. with a strong foundation in electrochemistry and co2 recycling, he is poised to contribute significantly to the global effort in combating climate change through technological advancements. his legacy will be defined by his commitment to sustainable engineering solutions, inspiring future generations of researchers to explore new frontiers in metallurgical and environmental sciences.

Notable Publications 

  • Title: Reduction performance and degradation mechanism of chlorinated hydrocarbon electrocatalytic hydrodechlorination using synthetic Ti/Pd cathode
    Authors: Wang, J., Wu, S., Liu, K., Wang, C., Yang, Z.
    Journal: Journal of Water Process Engineering, 2024, 65, 105880
  • Title: Numerical Simulation of Innovative Slag Splashing Process in a Converter Using a Nozzle-Twisted Oxygen Lance
    Authors: Zhang, H., Liu, K., Zhao, H., Liang, J., Yuan, Z.
    Journal: Journal of Sustainable Metallurgy, 2024, 10(2), pp. 864–879
  • Title: Effect of hot coil immersion cooling process on microstructure and properties of strip steel and oxide scales
    Authors: Yu, Y., Zhang, L., Liu, K., Wang, L., Niu, T.
    Journal: Canadian Metallurgical Quarterly, 2024
  • Title: Melt structure of calcium aluminate-based non-reactive mold flux: Molecular dynamics simulation and spectroscopic experimental verification
    Authors: Liu, K., Han, Y., Zhu, L., Liu, S.
    Journal: Construction and Building Materials, 2023, 406, 133363
  • Title: Novel low-cost steel slag porous ceramic-based composite phase change material: An innovative strategy for comprehensive utilization of steel slag resources
    Authors: Liu, K., Yuan, Z., Zhao, H., Zhang, H., Ma, B.
    Journal: Ceramics International, 2023, 49(22), pp. 35466–35475

Prof. Qiang Huang – Materials used for the removal of environmental toxins – Best Researcher Award

Prof. Qiang Huang - Materials used for the removal of environmental toxins - Best Researcher Award

Yunnan university - China 

Author Profile 

ORCID 

🌱 Early academic pursuits

Huang Qiang’s academic journey was rooted in his passion for environmental science and sustainable materials. with a deep commitment to advancing knowledge in the field, he pursued a phd in science, laying the groundwork for a distinguished career in research and education. his early years were marked by a relentless curiosity and a drive to uncover innovative solutions for environmental challenges, which would later define his professional endeavors.

🏫 Professional endeavors

As a professor and doctoral supervisor at the school of materials science, yunnan university, huang qiang has dedicated his career to educating the next generation of scientists and researchers. his teaching responsibilities are complemented by his extensive research activities, which focus on the critical areas of biomass resource utilization, co2 capture technology, and environmental remediation. his role at the university has allowed him to combine academic instruction with cutting-edge research, fostering an environment of innovation and discovery.

🔬 Contributions and research focus

Huang Qiang’s research contributions have significantly advanced the fields of biomass resource utilization and environmental remediation. his work on co2 capture technology addresses one of the most pressing global challenges—climate change. he has authored and co-authored over 40 research and teaching papers as the first author or corresponding author, showcasing his Materials used for the removal of environmental toxins expertise and dedication to disseminating knowledge. his studies have not only enhanced scientific understanding but also provided practical solutions for sustainable development and environmental conservation.

🏆 Accolades and recognition

Throughout his career, huang qiang has garnered recognition for his impactful research and academic contributions. his publications in esteemed journals reflect his standing as a leading Materials used for the removal of environmental toxins figure in his field. the acknowledgment of his work by the scientific community highlights the significance of his contributions to environmental science and materials research.

🌍 Impact and influence

Huang Qiang’s work has had a profound influence on both academia and the broader scientific community. his research on co2 capture and environmental remediation technologies has paved the way for innovative approaches to mitigating environmental degradation. as an educator, he has inspired countless students to pursue careers in science and environmental sustainability, shaping the future of research and innovation.

✨ Legacy and future contributions

Huang Qiang’s legacy lies in his unwavering commitment to addressing global environmental challenges through science and education. his efforts have not only advanced knowledge in his Materials used for the removal of environmental toxins field but also set a standard for interdisciplinary research and collaboration. as he continues his work, his future contributions are poised to drive further innovations in sustainable materials and environmental technologies, leaving a lasting impact on the field and society at large.

Notable Publications 

 

  • Title: Fe-catalyzed low-temperature hydrothermal liquefaction of coffee shells: Influence of operating parameters on bio-oil yield, distribution of bio-oil products
    Authors: Guangrong Liu, Fangyue Chen, Kaihong Cao, Bangheng Jin, Li Rao, Xin Jin, Feifei He, Qiang Huang
    Journal: Journal of the Energy Institute
  • Title: Energy-saving CO2 desorption from amine solution over Fe/SiO2/biochar catalysts: Desorption performance, structure-activity relationship, and mechanism
    Authors: Li Rao, Bangheng Jin, Dong Chen, Xin Jin, Guangrong Liu, Zilin Huang, Kaihong Cao, Fangyue Chen, Qiang Huang
    Journal: Chemical Engineering Journal
  • Title: Biochar-mediated release of CO2 from monoethanolamine/H2O solution with low energy requirement over ZrO2/SiO2/biochar ternary catalysts
    Authors: Dong Chen, Li Rao, Bangheng Jin, Xin Jin, Guangrong Liu, Zilin Huang, Kaihong Cao, Fangyue Chen, Qiang Huang
    Journal: Journal of Cleaner Production
  • Title: Efficient destruction of basic organo-nitrogenous compounds in liquid hydrocarbon fuel using ascorbic acid/H2O2 system under ambient condition
    Authors: Xin Jin, Xiaohu Du, Guangrong Liu, Bangheng Jin, Kaihong Cao, Fangyue Chen, Qiang Huang
    Journal: Journal of Hazardous Materials
  • Title: Ultrasound enhanced destruction of tetracycline hydrochloride with peroxydisulfate oxidation over FeS/NBC catalyst: Governing factors, strengthening mechanism and degradation pathway
    Authors: Guangrong Liu, Chuangfu Song, Zilin Huang, Xin Jin, Kaihong Cao, Fangyue Chen, Bangheng Jin, Li Rao, Qiang Huang
    Journal: Chemosphere

Dr. Abhishek Chatterjee – Semiconductor Materials and Devices – Best Researcher Award

Dr. Abhishek Chatterjee - Semiconductor Materials and Devices - Best Researcher Award

Raja Ramanna Centre for Advanced Technology - India

AUTHOR PROFILE

GOOGLE SCHOLAR

EARLY ACADEMIC PURSUITS 🎓

Abhishek Chatterjee's academic journey began with a Bachelor of Science (B.Sc.) in Physics, Chemistry, and Mathematics from the University of North Bengal, where he distinguished himself by securing a University Medal for his academic excellence. He furthered his studies with a Master of Science (M.Sc.) in Physics, specializing in Condensed Matter Physics at Jadavpur University. His passion for semiconductor physics led him to pursue a Master of Technology (M.Tech.) at Homi Bhabha National Institute, Mumbai, focusing on the electrical characterization of nitride epitaxial layers. Abhishek culminated his academic training with a Ph.D. in Physics, with a thesis on electronic transport studies on GaN epitaxial layers for fabricating radiation-hard ultraviolet photodetectors.

PROFESSIONAL ENDEAVORS 🏢

Since 2012, Abhishek has been serving as a Scientific Officer at the Raja Ramanna Centre for Advanced Technology (RRCAT) in Indore, India. His role involves extensive research and development in the field of semiconductor materials and devices. Abhishek has made significant contributions to the growth and characterization of III-V and nitride semiconductors, utilizing advanced techniques such as Metal-Organic Chemical Vapor Phase Deposition (MOCVD) and Molecular Beam Epitaxy (MBE). His expertise extends to various fabrication processes, including photolithography, etching, and thin-film deposition, highlighting his comprehensive skills in semiconductor device development.

CONTRIBUTIONS AND RESEARCH FOCUS 🔬

Abhishek's research is deeply rooted in the physics of III-V, III-N, and ultra-wide band gap semiconductors. His work primarily revolves around the epitaxial growth of these materials, exploring their optoelectronic properties, and investigating the interfaces of metal/semiconductor and Semiconductor Materials and Devices metal/oxide/semiconductor junctions. He has developed optoelectronic and photonic devices with applications in advanced technology. His doctoral research on GaN epitaxial layers has provided valuable insights into electronic transport mechanisms and radiation hardness, which are crucial for developing high-performance ultraviolet photodetectors.

ACCOLADES AND RECOGNITION 🏅

Abhishek's contributions have been recognized with several awards and honors. Notably, he received the Best Thesis Award at the 30th DAE-BRNS National Laser Symposium, organized by the Indian Laser Association and BARC. He has also been acknowledged as an Outstanding Reviewer by prestigious international journals, including Materials Research Express and Semiconductor Science and Technology. His work on Semiconductor Materials and Devices dislocation-limited electronic transport in GaN templates was featured in Semiconductor Today Magazine, underscoring his impact in the field of semiconductor research.

IMPACT AND INFLUENCE 🌟

Abhishek's research has significantly impacted the field of optoelectronics and semiconductor physics. His studies on wide band gap semiconductors have advanced our understanding of material properties and device performance, paving the way for new applications in Semiconductor Materials and Devices radiation-hard electronics and photodetectors. His expertise in growth techniques and device fabrication has been instrumental in pushing the boundaries of semiconductor technology, contributing to the development of cutting-edge technologies.

LEGACY AND FUTURE CONTRIBUTIONS 🔮

Abhishek Chatterjee's legacy in the field of semiconductor research is marked by his pioneering work on GaN epitaxial layers and their applications in optoelectronic devices. As a life member of the Indian Laser Association, he continues to be an active contributor to the scientific community. Abhishek's future work promises to delve deeper into the complexities of semiconductor physics, exploring new materials and device architectures that will shape the next generation of optoelectronic technologies. His commitment to excellence and innovation ensures that his contributions will have a lasting impact on the field.

NOTABLE  PUBLICATIONS

Dislocation-assisted tunnelling of charge carriers across the Schottky barrier on the hydride   2015(25)

Role of threading dislocations and point defects in the performance of GaN-based metal-semiconductor-metal 2020(15)

Effect of 60Co γ-irradiation on the nature of electronic transport in heavily doped n-type GaN based Schottky photodetectors 2018(14)

Dislocations limited electronic transport in hydride vapour phase epitaxy grown GaN templates:   2015(13)

Role of ZrO2 Passivation Layer Thickness in the Fabrication of High‐Responsivity GaN Ultraviolet Photodetectors 2019(12)