Dong Guo | Nanotechnology | Best Researcher Award

Dr. Dong Guo | Nanotechnology | Best Researcher Award

The Third Affiliated Hospital of Southern Medical University | China

Dr. Dong Guo is a dedicated and emerging scholar in the field of Orthopaedics, currently pursuing his Ph.D. at Southern Medical University under the guidance of Dr. Denghui Xie. With a solid background in clinical medicine, Dong Guo has quickly progressed through rigorous academic training and impactful research roles. He brings a multidisciplinary approach to medical science, integrating knowledge from cellular biology, nanotechnology, and regenerative medicine. His contributions have already begun to shape promising directions in rheumatoid arthritis and osteoarthritis treatment.

Professional profile👤

ORCID

Scopus

Strengths for the Awards✨

Dong Guo demonstrates exceptional potential and performance in biomedical research, particularly in orthopaedics and inflammatory joint diseases such as rheumatoid arthritis, osteoarthritis, and osteoporosis. His strong educational foundation—holding a Bachelor in Clinical Medicine, a Master’s, and now pursuing a Ph.D. at Southern Medical University—provides a solid platform for advanced research. His research productivity is evident through multiple Q1 journal publications with high impact factors:

  • Bone Research (IF: 13.362, cited by 51)

  • Bioactive Materials (IF: 18.0)

  • Theranostics (IF: 12.4)

  • Journal of Nanobiotechnology (IF: 10.6)

🎓 Education

Dr. Dong Guo commenced his academic journey with a Bachelor’s degree in Clinical Medicine (2013–2018) from Jiangsu University, followed by a Master’s degree in Orthopaedics (2018–2021) under Dr. Daozhang Cai at Southern Medical University. He is currently enrolled as a Ph.D. candidate in Orthopaedics (2022–present) under the mentorship of Dr. Denghui Xie at the same institution, focusing on innovative therapies for chronic musculoskeletal disorders.

🏥 Experience

From July 2021 to September 2022, Dong Guo served as a Research Assistant at The Third Affiliated Hospital of Southern Medical University, where he actively contributed to experimental research and clinical translational work in orthopaedics and inflammatory diseases. His academic visibility was highlighted through oral presentations at prestigious national forums, including the Chinese Sport Medical Doctor Association (2021 & 2024) and the Guangdong Sport Medical Doctor Association (2022).

🔬 Research Interests On Nanotechnology

Dong Guo’s research is driven by a passion to decode the cellular and molecular mechanisms underlying joint diseases. His primary interests include Rheumatoid Arthritis, Osteoarthritis, Osteoporosis, and Senescence, with focused work on osteoclast biology, mitochondrial biogenesis, and nanotherapeutic interventions. He is also exploring innovative delivery mechanisms for gene therapy in degenerative diseases.

🏆 Awards

Dong Guo has received several accolades for his scholarly excellence and research innovation:

  • National Scholarships in 2022 and 2024

  • Best Oral Presentation Award at the 1st BMEMat-Advanced Materials Joint Symposium (2024)

  • Selected Oral Presentation Award at the Guangdong-Hong Kong-Macao Greater Bay Area Orthopedic Postgraduate Academic Forum (2024)

  • Excellent Manuscript Award by the Chinese Sport Medical Doctor Association (2021)

  • Second Prize in Thesis Competition at the Guangdong Postgraduate Academic Forum (2023)

  • High-Quality Experimental Works recognition at Southern Medical University (2022)

📚 Publications

Dong Guo has published several high-impact research articles in prestigious journals:

  1. FABP4 secreted by M1-polarized macrophages promotes synovitis and angiogenesis to exacerbate rheumatoid arthritis, Bone Research, 2022. Cited by: 51

  2. A Nanoplatform Reprograms Hypoxia M1 Macrophage by Interrupting Adverse Feedback Loop for Synergistic Rheumatoid Arthritis Therapy, Bioactive Materials, 2024.

  3. Photoreceptor-targeted extracellular vesicles-mediated delivery of Cul7 siRNA for retinal degeneration therapy, Theranostics, 2024.

  4. Polypyrrole-ferric phosphate-methotrexate nanoparticles enhance apoptosis/ferroptosis of M1 macrophages via autophagy blockage for rheumatoid arthritis treatment, Journal of Nanobiotechnology, 2025.

  5. Rspo2 exacerbates rheumatoid arthritis by targeting aggressive phenotype of fibroblast-like synoviocytes and disrupting chondrocyte homeostasis via Wnt/β-catenin pathway, Arthritis Research & Therapy, 2023.

🧾 Conclusion

Dong Guo exemplifies the qualities of a rising star in biomedical and clinical research. His integrated expertise in orthopaedics, nanotherapy, and molecular signaling, paired with his recognized contributions to high-impact publications and presentations, make him a worthy nominee for any Best Researcher Award. With a promising trajectory and a passion for scientific discovery, Dong Guo is poised to lead innovative advancements in musculoskeletal disease therapy. 🌟

Pratiksha Agnihotri | Nanotechnology | Best Paper Award

Dr. Pratiksha Agnihotri | Nanotechnology | Best Paper Award

Dr. Pratiksha Agnihotri is a dedicated physicist specializing in materials science, currently serving as a Project Officer at the Centre for Programmable Photonic Integrated Circuits and Systems (CPPICS) at IIT Madras, under the Ministry of Electronics and Information Technology (MeitY), Government of India. With a Ph.D. in Physics, she has authored 14 peer-reviewed international journal articles, focusing on high dielectric materials for energy storage devices. Her commitment to advancing energy storage technologies is evident in her innovative research and active engagement in academic mentorship and science outreach.

Professional profile👤

Google Scholar

ORCID

Scopus

Strengths for the Awards✨

  1. Substantive Research Output:
    With 14 peer-reviewed publications, many in high-impact journals like Ceramics International, Emergent Materials, and Ionics, Pratiksha has demonstrated consistent and relevant contributions in the field of high dielectric materials and energy storage.

  2. Innovative Research Focus:
    Her work on KNN-based metal oxide composite thin films and Mo²⁺ substituted hexaferrites addresses cutting-edge materials for energy storage applications, a critical domain in sustainability and electronics.

  3. First-Author Contributions:
    She is the first author on the majority of her published papers, indicating lead contributions in design, execution, and manuscript preparation — a key criterion for Best Paper Awards.

  4. Interdisciplinary Impact:
    Her integration of impedance spectroscopy, dielectric analysis, and material synthesis techniques bridges physics, materials science, and electronics engineering, increasing the applicability and reach of her research.

  5. Recognition through Patents:
    Filing four patents demonstrates the originality and application-oriented nature of her work, adding a commercial and innovation dimension to her academic achievements.

  6. Institutional Affiliation:
    Currently affiliated with IIT Madras under the Ministry of Electronics and Information Technology (MeitY) — a national-level Centre of Excellence — provides credibility and underscores the national relevance of her work.

🎓 Education

Dr. Agnihotri’s academic journey reflects her deep commitment to physics and materials science. She earned her Ph.D. in Material Science from Shoolini University, Himachal Pradesh, India, in December 2025, achieving a CGPA of 8.2. Her doctoral research, titled “Optimization of Theoretical & Experimental Approach of KNN – Based Metal Oxide Composite Thin Film for High Dielectric Material,” encompassed advanced material characterization, solid-state physics, and dielectric properties. Prior to this, she completed her Master of Science in Physics from Shoolini University in June 2021 with a CGPA of 7.8, and her Bachelor of Science in Physics from Himachal Pradesh University in June 2019 with a CGPA of 6.78.

💼 Experience

Dr. Agnihotri brings a wealth of experience in both research and academia. Since December 17, 2024, she has been contributing to CPPICS at IIT Madras, where she creates and delivers project presentations, updates stakeholders on milestones, and fosters strong project relationships. In January 2023, she served as a teaching assistant at Shoolini University, providing homework assistance, motivating students, and collaborating to enhance learning outcomes. Her roles demonstrate her ability to bridge complex research with effective communication and mentorship.

🔬 Research Interests On Nanotechnology

Dr. Agnihotri’s research is centered on the synthesis and characterization of advanced materials for energy applications. Her interests include:

  • Oxide, Carbonate, and Ferrite materials

  • Synthesis of nanomaterials

  • Energy storage devices

  • Solar cells

  • Thermistor applications

  • Flexible electronic devices

She is proficient in various analytical techniques such as XRD, FESEM, Raman Spectroscopy, FTIR, Dielectric Spectroscopy, Modulus, Impedance, and AC Conductivity measurements. Her expertise extends to software tools like Origin, FullProf, VESTA, and ImageJ, which she utilizes for data analysis and visualization.

🏆 Awards & Patents

Dr. Agnihotri’s innovative work has led to the filing of several patents, including:

  • Mo²⁺ substituted Ba₀.₇Gd₀.₃MoxF₁₂₋ₓO₁₉ M-type hexaferrite-based nanomaterial and its preparation process.

  • Rietveld analysis and negative dielectric behavior of perovskite-like La₁₋ₓEuxMnO₃ ceramic system.

  • Pr³⁺/Mn²⁺ doped (Bi₀.₉₅Pr₀.₀₅)(Fe₀.₉₅Mn₀.₀₅)O₃ perovskite ceramic-based nanomaterial.

  • Gd-doped (BiFeO₃–BaTiO₃) multiferroic perovskite-based nanomaterial.

  • Dy³⁺/Mn²⁺ doped (Bi₀.₉₅Dy₀.₀₅)(Fe₀.₉₅Mn₀.₀₅)O₃ perovskite ceramic-based nanomaterial.

  • LiNbO₃ composite-based perovskite system substituted on KNN ceramic nanomaterial.

These patents underscore her contributions to the development of novel materials with potential applications in energy storage and electronic devices.

📚 Publications

Dr. Agnihotri has an impressive portfolio of publications. Here are some of her notable works:

Title: Exploring the structural and electrical trends in Mo²⁺ substituted Ba₀.₇Gd₀.₃MoxF₁₂₋ₓO₁₉ Hexaferrite
Authors: P Agnihotri, A Kumar, SS Parida, S Kumari, B Singh, R Hawaldar, R Rai
Year: 2024
Citations: 6

Title: Relaxation behaviour, conductive grains and resistive boundaries of bismuth-based double perovskite Bi₂₋ₓLaₓFeGaO₆
Authors: JP Nayak, P Agnihotri, S Kumari, P Kumari, P Kumar, R Rai
Year: 2024
Citations: 5

Title: Study the structural, electrical and ferroelectric behaviour of lead-free sodium potassium niobate (KNN) ceramics in view of energy storage capacity
Authors: P Agnihotri, R Hawaldar, R Rai
Year: 2024
Citations: 5

Title: Exploring the structural characteristics and electrical conductivity of MnTiO₃ across ferroelectric and paraelectric phases
Authors: P Agnihotri, R Hawaldar, M Singh, R Rai
Year: 2024
Citations: 5

Title: Investigation of structural and electrical properties of 0.90PbMn₁/₃Nb₂/₃O₃–0.10PbTiO₃ ceramics prepared via solid-state reaction
Authors: P Agnihotri, S Kumari, P Negi, P Kumar, P Kumari, R Hawaldar, R Rai
Year: 2024
Citations: 5

Title: Structural and dielectric characterization of BiLaCoGaO₆ double perovskite ceramic using x-ray diffraction and impedance spectroscopy
Authors: P Agnihotri, JP Nayak, P Kumar, R Rai
Year: 2024
Citations: 4

Title: Exploring impedance and modulus response of cobalt titanate in ferroelectric phase
Authors: NP Yadav, P Agnihotri, R Rai
Year: 2025
Citations: 3

Title: A comprehensive review of bismuth, lanthanum and strontium based double perovskites− Unravelling structural, magnetic, and dielectric properties
Authors: J Parsadnayak, R Jasrotia, A Kumarsharma, A Kandwal, P Agnihotri, …
Year: 2024
Citations: 3

Title: Synergistic effect of self-poled fibre based flexible lead-free KNN/P(VDF-HFP) nanofiber mat for scavenging piezoelectric energy
Authors: MSSK Gun Anit Kaur, Pratiksha
Year: 2022
Citations: 3

Title: Investigation of dielectric transitions and impedance behavior in solid solutions of (1–x) K₀.₄₁Na₀.₅₉Nb₀.₉₅₉Sb₀.₀₄₁O₃–x (Bi₀.₅K₀.₅TiO₃)
Authors: R Rai, P Agnihotri, S Kumari, M Dutta
Year: 2024
Citations: 2

Title: A spectroscopic ellipsometry study of TiO₂:ZrO₂ on TiN/Si thin films prepared by Chemical Beam Vapor Deposition
Authors: P Agnihotri, A Verma, A Saini, R Rani, W Maudez, E Wagner, G Benvenuti, …
Year: 2024
Citations: 2

✅ Conclusion

Dr. Pratiksha Agnihotri exemplifies the integration of rigorous scientific research with practical applications in energy storage and materials science. Her extensive academic background, combined with her hands-on experience in research and teaching, positions her as a valuable contributor to the scientific community. Her work not only advances the field of high dielectric materials but also inspires future innovations in sustainable energy solutions.