Innovative Research Award
| Ningning Liang | |
|---|---|
| Affiliation | Beijing University of Technology |
| Country | China |
| Scopus ID | 57188589614 |
| Documents | 38 |
| Citations | 2,095 |
| h-index | 20 |
| Subject Area | Advanced Materials Engineering |
| Event | International Forensic Scientist Awards |
| ORCID | 0000-0002-6548-8030 |
Ningning Liang
Beijing University of Technology, China
Ningning Liang is a researcher affiliated with Beijing University of Technology, China, whose scholarly activities are centered on advanced materials engineering, optoelectronic devices, organic light-emitting diodes (OLEDs), and functional nanomaterials. With a Scopus record of 38 indexed publications, 2,095 citations, and an h-index of 20, Liang has contributed to the development of high-performance materials and next-generation device architectures. The research profile demonstrates sustained engagement with internationally recognized journals and interdisciplinary innovation in materials science.[1]
Abstract
This article summarizes the academic achievements of Ningning Liang in advanced materials engineering. The research portfolio reflects contributions to OLED technologies, molecular alignment strategies, plasmon-enhanced emission systems, MXene-based materials, and nanostructured optoelectronic devices. Publications appearing in leading journals demonstrate engagement with emerging scientific challenges and the translation of materials innovation into practical device performance improvements.[2]
Keywords
Advanced Materials Engineering, OLED Technology, MXenes, Optoelectronics, Molecular Alignment, Nanomaterials, Tribovoltaic Devices, Plasmonics, Functional Materials, Device Engineering.
Introduction
Research in advanced materials engineering plays an important role in modern electronics, energy-efficient displays, and emerging nanotechnologies. Ningning Liang’s work addresses critical challenges in material design and device optimization, particularly in the field of OLEDs and functional material interfaces. Through collaborations and publication activity, the researcher has contributed to knowledge generation in areas relevant to both academic investigation and technological development.[3]
Research Profile
Liang’s scholarly profile includes peer-reviewed publications in Advanced Science, Nature Communications, Advanced Functional Materials, and Advanced Optical Materials. Research themes include light-emitting devices, nanostructured materials, electrochemical exfoliation techniques, and performance enhancement strategies for solution-processed electronics. The citation record indicates sustained visibility and relevance within the materials science community.[1]
Research Contributions
- Development of nanoimprinted DMD electrodes for bidirectional viewing OLED systems.
- Advancement of meniscus-guided molecular alignment approaches for high-efficiency DR/NIR OLEDs.
- Investigation of MXene exfoliation methods and tribovoltaic device applications.
- Enhancement of OLED lifetime and directional emission through hybrid plasmon modes.
- Contributions to dual-color emissive OLED architectures with polarization control.
Publications
- Nanoimprinted DMD Electrodes Enabling Bidirectional Viewing OLEDs With Quasi Lambertian Emission.
- Meniscus-Guided Molecular Alignment for High-Efficiency Solution-Processed DR/NIR-OLEDs.
- Gaseous Molecules-Mediated Electrochemical Exfoliation of Halogenated MXenes.
- Hybrid Plasmon Mode Enhancing the Lifetime and Forward-Directional Emission for Solution-Processed OLEDs.
- Dual-color Emissive OLED with Orthogonal Polarization Modes.
Research Impact
The publication and citation metrics associated with Ningning Liang indicate notable scholarly influence in advanced materials engineering. Research outputs have appeared in high-impact journals and contribute to scientific understanding of nanomaterials, optoelectronic systems, and advanced device fabrication techniques. The citation performance reflects continued academic engagement and recognition within the field.[4]
Award Suitability
Based on documented scholarly outputs, citation indicators, and contributions to materials engineering research, Ningning Liang demonstrates attributes consistent with consideration for the Innovative Research Award presented through the International Forensic Scientist Awards. The record reflects innovation, publication quality, interdisciplinary relevance, and measurable research visibility.[5]
Conclusion
Ningning Liang’s academic profile represents a significant body of work in advanced materials engineering. Through contributions to OLED technology, nanomaterials research, and functional device development, the researcher has established a record of scholarly productivity and scientific relevance. Citation performance and publication quality collectively support recognition within international research and innovation programs.
External Links
References
- Elsevier. (n.d.). Scopus author details: Ningning Liang, Author ID 57188589614. Scopus.
https://www.scopus.com/pages/authors/57188589614 - Advanced Science. (2026). Nanoimprinted DMD Electrodes Enabling Bidirectional Viewing OLEDs With Quasi Lambertian Emission.
https://doi.org/10.1002/advs.202518921 - Advanced Optical Materials. (2025). Meniscus-Guided Molecular Alignment for High-Efficiency Solution-Processed DR/NIR-OLEDs.
https://doi.org/10.1002/adom.202501346 - Nature Communications. (2025). Electrochemical Exfoliation of Halogenated MXenes and Tribovoltaic Applications.
https://doi.org/10.1038/s41467-025-60303-5 - Advanced Functional Materials. (2024). Hybrid Plasmon Mode Enhancing the Lifetime and Forward-Directional Emission for Solution-Processed OLEDs.
https://doi.org/10.1002/adfm.202400449 - Nature Communications. (2024). Dual-color Emissive OLED with Orthogonal Polarization Modes.
https://doi.org/10.1038/s41467-024-45311-1
