Dr. Mathilde Maillard – Rheology for Ceramics 3D Printing – Best Researcher Award

Dr. Mathilde Maillard - Rheology for Ceramics 3D Printing - Best Researcher Award

Université de Lille - France

Author Profile 

ORCID

🎓 Early academic pursuits

Mathilde Maillard began her academic journey with a deep interest in materials chemistry, eventually specializing in biomaterials. this academic focus culminated in her pursuit of a phd in materials science and engineering, emphasizing biomedical applications. during her doctoral studies at cnrs lyon, she explored ceramic paste formulation with hydrogel for 3d printing, engaging in advanced rheological studies to optimize printability and mechanical properties. her academic path also included a notable visiting research experience at imperial college london, where she collaborated with the centre for advanced structural ceramics lab. this academic foundation has a strong alignment with the advancement of power electronics, especially through material optimization techniques relevant to biomedical devices.

💼 Professional endeavors

Following her phd, mathilde’s professional path expanded into both academic and industrial roles. she served as an r&d project manager at bone 3d in paris, where she worked on titanium implants using slm technology, and co-supervised phd research in collaboration with the french army. later, she became a postdoctoral researcher at inserm in paris and lille, focusing on hydrogel formulation, tissue engineering, and 3d bioprinting. notably, her work includes developing class iii medical devices, setting up point-of-care 3d printing facilities in hospitals, and fabricating custom 3d-printed tools for surgical applications. her cross-disciplinary experience, integrating power electronics in process optimization, plays a crucial role in developing smarter, responsive biomedical devices.

🔬 Contributions and research focus

Mathilde’s research is rooted in additive manufacturing, rheology, and the development of bio-inks and hydrogels for bone and soft tissue reconstruction. her contributions span Rheology for Ceramics 3D Printing optimizing formulations for direct ink writing (diw), investigating biological-mechanical relationships of printed constructs, and promoting sustainable and scalable techniques for medical use. by connecting rheological behavior to final product functionality, she bridges a critical gap in 3d bioprinting. her experimental results are foundational to understanding material interactions, and her research methodology can also benefit power electronics fields that require precision in composite material behavior under stress.

🌍 Impact and influence

Mathilde has significantly impacted both the biomedical and academic communities. as the founder of “bien dans ma thèse”, she advocates for phd well-being and doctoral value Rheology for Ceramics 3D Printing promotion. with a podcast series, public talks, and a thriving online community of over 2,000 members, she brings visibility and support to early researchers. her scientific work, especially in medical imaging, surgical guide design, and rheological optimization, has wide-reaching implications in personalized medicine. the translatability of her techniques to power electronics applications, such as micro-device fabrication, adds to her interdisciplinary influence.

📚 Academic cites

While early in her postdoctoral career, mathilde has already contributed peer-reviewed publications, including at least one indexed article during her recent postdoctoral tenure. her Rheology for Ceramics 3D Printing academic collaborations with international institutions and startups further extend her research visibility. her methodologies and findings have been cited in works focusing on biomaterials, tissue scaffolds, and 3d printing technologies, which can potentially enhance power electronics materials research, especially in the fabrication of biologically integrated electronics.

🌟 Legacy and future contributions

Mathilde Maillard’s vision is to advance the frontiers of biomedical engineering through innovative additive manufacturing methods. she is committed to bridging the gap between laboratory research and clinical application, particularly by integrating rheology, biomineralization, and 3d printing technologies for real-world use. her continued focus on soft matter for reconstructive surgery and scalable hydrogel formulations positions her as a future leader in this space. her entrepreneurial efforts also ensure that the phd community remains empowered, knowledgeable, and connected. with potential to further contribute to the power electronics industry through smart, bio-integrated materials, her legacy is set to span both healthcare and high-tech domains.

Notable Publications 

  • Title: Advances and obstacles to unify the concept of “printability” in Ceramics Direct Ink Writing
    Author(s): Mathilde Maillard, Sylvain Fournier, Esther García-Tuñón, Edwin-Joffrey Courtial
    Journal: Open Ceramics

  • Title: Optimization of mechanical properties of robocast alumina parts through control of the paste rheology
    Author(s): Mathilde Maillard, Jérôme Chevalier, Laurent Gremillard, Guilhem P. Baeza, Edwin-Joffrey Courtial, Sarah Marion, Vincent Garnier
    Journal: Journal of the European Ceramic Society

Dr. Chekwube Andrew Ezegbe  – NANOSCIENCE AND ADVANCED MATERIALS – Best Researcher Award 

Dr. Chekwube Andrew Ezegbe  - NANOSCIENCE AND ADVANCED MATERIALS - Best Researcher Award 

FEDERAL UNIVERSITY OF ABC - Nigeria

AUTHOR PROFILE 

ORCID 

🧪 EARLY ACADEMIC PURSUITS

Ezegbe Chekwube Andrew’s academic journey is marked by a solid foundation in multidisciplinary sciences. He earned a Bachelor of Science in Microbiology and Biochemistry from the University of Nigeria, Nsukka, in 2010. Driven by his passion for health and innovation, he pursued a Bachelor of Pharmacy (B.Pharm) in 2016 from the same institution. Combining his expertise in both microbiology and pharmaceutical sciences, he exemplified a commitment to expanding his academic horizons.

🎓 PROFESSIONAL ENDEAVORS

A licensed pharmacist and dedicated educator, Ezegbe has over six years of teaching experience at a reputable university in Nigeria. His role as a lecturer allowed him to impart knowledge in pharmaceutical technology and industrial pharmacy. Alongside teaching, he actively participated in academic advisory roles, contributing to curriculum development and student mentorship. His expertise in creating collaborative and interactive learning environments has shaped the next generation of professionals.

🌍 CONTRIBUTIONS AND RESEARCH FOCUS

Ezegbe’s research spans pharmaceutical technology, nanoscience, and microbiology. His Master’s thesis explored innovative pharmaceutical technologies, earning him a stellar CGPA of 4.9. NANOSCIENCE AND ADVANCED MATERIALS Currently, he is pursuing a Ph.D. in Nanoscience and Advanced Materials at the Federal University of ABC, Brazil, supported by a prestigious full scholarship. His research focuses on the intersection of advanced materials and pharmaceutical applications, contributing to cutting-edge developments in nanotechnology.

🏆 ACCOLADES AND RECOGNITION

Ezegbe has received notable recognition for his academic and professional excellence. Winning the Federal University of ABC full scholarship for a Ph.D. program in Nanoscience and Advanced NANOSCIENCE AND ADVANCED MATERIALS Materials stands as a testament to his exceptional academic capabilities. His achievements reflect his dedication and pioneering efforts in his field.

🌟 IMPACT AND INFLUENCE

Throughout his career, Ezegbe has significantly impacted the academic and healthcare sectors. His dual expertise in microbiology and pharmacy enables him to address complex challenges in NANOSCIENCE AND ADVANCED MATERIALS public health and pharmaceutical sciences. By integrating nanotechnology into healthcare research, he is paving the way for innovative solutions to pressing global issues.

🚀 LEGACY AND FUTURE CONTRIBUTIONS

Ezegbe’s academic and professional journey underscores his commitment to excellence and innovation. As he delves deeper into nanoscience and advanced materials, he is poised to leave a lasting impact on pharmaceutical technology and healthcare research. His legacy lies in bridging disciplines to create transformative solutions for society.

NOTABLE PUBLICATIONS 

  • Title: Evaluation of Metronidazole Tablets Formulated with Different Disintegrants Using Moisture Activated Dry Granulation
    Authors: Ezegbe Chekwube Andrew, Ezegbe Amarachi Grace, Chime Amarachi Salome, Ugwu Calister Elochukwu, Boniface Christian Izuchukwu, Ugwuoke Kenneth Ejiofor, Chukwuemeka Chizoba Lorrita, Onunkwo Godswill
    Journal: Universal Journal of Pharmaceutical Research
  • Title: Identification of Cholisterase Inhibitors and Antioxidant Molecules from Leaves of Chlorodendrum Splendes Using GC-MS
    Author: Ezegbe C. A.
    Journal: Tropical Journal of Natural Product Research
  • Title: Evaluation of Oro-Dispersible Tablets (Artemether-Lumefantrine and Amoxicillin Trihydrate) Used for Some Common Childhood Diseases (Malaria and Pneumonia)
    Authors: Ezegbe Chekwube Andrew, Ezegbe Amarachi Grace, Boniface Christian Izuchukwu, Okorafor Ezinne Chinemerem, Godswill Onunkwo
    Journal: Universal Journal of Pharmaceutical Research
  • Title: Drug Carriers
    Author: Ezegbe C. A.
    Journal: Journal of Current Biomedical Research
  • Title: Development and Characterization of Lecithin-Based Nanoformulation for Enhanced Delivery of Isoniazid in the Treatment of Tuberculosis
    Author: Ezegbe C. A.
    Journal: Indo American Journal of Pharmaceutical Sciences