Huang Zhaoling | 2D Materials | Research Excellence Award

Assoc. Prof. Dr. Huang Zhaoling | 2D Materials | Research Excellence Award

Guilin University of Electronic Technology | China

Dr. Zhaoling Huang is an Associate Professor and Master’s Supervisor at Guilin University of Electronic Technology, where he also serves as Deputy Director of the Microelectronics Packaging and Assembly Technology Research Team and a core member of the Ministry of Education Engineering Research Center for Electronic Information Materials and Devices. He holds a Doctor of Engineering degree and has received interdisciplinary training in mechanical engineering, micro-nano biomedical engineering, and electronic manufacturing. His academic and professional experience spans postdoctoral research, industry consultancy, enterprise technology commissioning, and visiting scholarship at leading national universities. Dr. Huang’s teaching portfolio includes undergraduate and graduate courses in circuits, sensors, optoelectronic measurement, electronic technology, and electronic manufacturing processes, with consistently excellent teaching evaluations. His research focuses on electronic packaging interconnect design, reliability of power semiconductor devices, tactile and flexible electronic sensors, MEMS devices, biomedical microdevices, micro- and nanomaterials, surface coating processes, pressure sensing, and multiphysics simulations. He has actively promoted the transformation of scientific achievements through patent transfer and industry collaboration. Dr. Huang has received numerous academic, teaching, and innovation honors and serves as a reviewer and editorial board member for multiple international journals. He is also deeply committed to talent cultivation, having guided students to national and provincial awards in innovation, design, and research competitions, contributing significantly to advanced engineering education and applied research.

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Citations
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Featured Publications


Biomimetic pyrolytic MXene-based multifunctional films with multi-level structure for wearable piezoresistive devices and bioelectronics

– Advanced Functional Materials

Polarity effect of interfacial intermetallic compounds of BGA structure Cu/Sn-52In/Cu solder joints during electromigration

– Intermetallics

Recent Progress in Multi-Scale Piezoresistive Interfaces for MXene-Based Flexible Sensors

– Advanced Materials Technologies

Challenges and Opportunities of Implantable Neural Interfaces: From Material, Electrochemical and Biological Perspectives

– Advanced Functional Materials

Multi-scale GO/CNT/AlN Nanocomposites for High-Performance Flexible Electrothermal Film Heaters

– Journal of Materials Chemistry 

Ajay Kumar | 2D materials | Young Scientist Award

Mr. Ajay Kumar | 2D materials | Young Scientist Award 

Mr. AJAY KUMAR, SSPL DRDO & D.U, India.

🔬 Ajay Kumar is a Senior Research Fellow (SRF) at SSPL, DRDO & University of Delhi, specializing in 2D materials and optoelectronic devices. He holds an M.Sc. in Electronics from the University of Delhi and is currently pursuing a Ph.D. His research focuses on nanomaterial synthesis, doping, and device integration, contributing to next-generation photonic and nano-electronic technologies. With published research in high-impact journals and expertise in CVD growth, photolithography, and device fabrication, he is advancing scalable, high-performance electronic applications. ⚡

Professional Profile

🎓 Early Academic Pursuits

Mr. Ajay Kumar holds an M.Sc. in Electronics from the Department of Electronic Science, University of Delhi. His academic foundation is rooted in nanomaterials and optoelectronics, equipping him with expertise in material synthesis, device fabrication, and advanced characterization techniques. Currently, he is pursuing a Ph.D. at SSPL, DRDO, where he is deeply engaged in cutting-edge research on the synthesis of 2D materials and their applications in optoelectronic devices.

💼 Professional Endeavors

As a Senior Research Fellow (S.R.F) at SSPL, DRDO & D.U, Mr. Kumar has contributed significantly to projects that advance the frontiers of optoelectronic and nanotechnology research. His work involves exploring advanced fabrication techniques and material engineering to enhance electronic and photonic device performance. His role also encompasses hands-on experience with lithography, metallization, and various device characterization methodologies.

🔬 Contributions and Research Focus On 2D materials 

Ajay Kumar’s research is centered on the synthesis, doping, and device integration of 2D materials for optoelectronic applications. His contributions include the development of CVD-grown MoS₂ films with enhanced optical properties and large-area MoS₂ films for high-performance photodetectors. His expertise spans scalable fabrication, material engineering, and advanced device architectures. His key areas of research include:

  • Nanomaterials and optoelectronics
  • Photolithography and device fabrication
  • Spin coating, metallization, and etching techniques
  • Electrical and optoelectronic characterization

🌍 Impact and Influence

Ajay Kumar’s work significantly contributes to the advancement of 2D materials in electronics and photonics. His research enhances device efficiency and performance in emerging nano-electronic applications. His innovations in material synthesis and integration have the potential to revolutionize flexible electronics, high-performance photodetectors, and advanced semiconductor technologies.

🏅 Awards and Honors 

Ajay Kumar’s contributions to nanotechnology and material science have positioned him as a valuable researcher in the field of optoelectronics. His work in developing innovative solutions for high-performance electronic devices is recognized within academic and professional circles. He is also a member of SSI, showcasing his commitment to the scientific community.

✨ PROFESSIONAL MEMBERSHIPS ✨

  • Member of SSI (Society for Scientific Innovation)

🚀 Legacy and Future Contributions

Ajay Kumar envisions a future where 2D materials drive technological advancements in optoelectronics and semiconductor devices. His research aims to enhance material properties, improve fabrication scalability, and develop high-performance electronic applications. He aspires to contribute to breakthroughs in flexible electronics, quantum computing, and next-generation semiconductor devices.

 

Publications Top Notes

“Photoluminescence Enhancement of CVD-Grown MoS₂ Monolayer by p-Type Doping Using Oxygen Annealing Technique”
“Enhanced Device Performance of 2D Graphene Film Transferred onto Suspended Si/SiO₂ Structures”
“Scalable Growth and Transfer of Large-Area MoS₂ Film on IDE Structures for Photodetector Application”