Enayatollah Moradi Rufchahi | Chemistry | Best Researcher Award

Assoc. Prof. Dr. Enayatollah Moradi Rufchahi | Chemistry | Best Researcher Award

Assoc. Prof. Dr. Enayatollah Moradi Rufchahi, Islamic Azad University, Iran

Assoc. Prof. Dr. Enayatollah Moradi Rufchahi is an expert in Organic Chemistry at the Islamic Azad University, Lahijan Branch, Iran. He holds a Ph.D. in Organic Chemistry from Guilan University (2009), where he researched azo dyes’ synthesis and spectroscopic properties. His research interests include the design, synthesis, and structural characterization of azo dyes and pigments, synthetic organic chemistry, and organic medicinal chemistry. He has a strong academic background with an MSc from the University of Tehran and a BSc from Guilan University. Dr. Moradi Rufchahi is also active in scholarly platforms such as Google Scholar and Scopus. πŸ“šπŸ”¬πŸ§ͺ

 

Academic Background

Assoc. Prof. Dr. Enayatollah Moradi Rufchahi is a distinguished scholar in Organic Chemistry with a Ph.D. from Guilan University (2009). His doctoral research focused on the Synthesis and Spectroscopic Properties of Some New Azo Dyes under the guidance of Prof. M.R. Yazdanbakhsh. He completed his MSc in Organic Chemistry at the University of Tehran in 1998, exploring Hydroxylation of Alkenes with KMnO4 in the presence of quaternary ammonium salts as phase transfer catalysts. Dr. Moradi Rufchahi also holds a BSc in Pure Chemistry from Guilan University, earned in 1995. πŸŽ“πŸ”¬πŸ“˜

 

Research Interests

Assoc. Prof. Dr. Enayatollah Moradi Rufchahi’s research focuses on the design and synthesis of azo dyes and pigments, exploring their spectroscopic properties and structural characterization. His work delves into synthetic organic chemistry, where he develops novel chemical compounds and reaction methodologies. Additionally, Dr. Moradi Rufchahi is interested in organic medicinal chemistry, working to identify and synthesize compounds with potential therapeutic applications. His research contributes to advancements in both the chemical and medicinal fields. πŸ”¬πŸ’‘πŸŽ¨πŸ’Š

Research Focus

The research of MR Yazdanbakhsh, H Yousefi, and their collaborators primarily focuses on the synthesis, characterization, and biological activity of azo dyes and heterocyclic compounds. Their studies cover a range of chemical properties, including solvatochromism, tautomerism, and spectroscopic characteristics. These researchers are also investigating antimicrobial activity and the application of these dyes in various fields, such as textile dyeing and material science. Their work contributes to organic chemistry, medicinal chemistry, and chemical applications with an emphasis on sustainable materials. 🌈πŸ§ͺπŸ”¬πŸ§¬

 

Publication Top Notes

  • Synthesis, spectral characterization and antimicrobial activity of some new azo dyes derived from 4, 6-dihydroxypyrimidine – Cited by 84 (2012) πŸ§ͺπŸ”¬
  • Synthesis of some new azo dyes derived from 4-hydroxy coumarin and spectrometric determination of their acidic dissociation constants – Cited by 80 (2007) 🧫
  • Tautomerism, solvatochromism, preferential solvation, and density functional study of some heteroarylazo dyes – Cited by 66 (2019) πŸ’»πŸ§‘β€πŸ”¬
  • Synthesis, characterization and spectroscopic properties of some new azo disperse dyes derived from 4-hydroxybenzo [h] quinolin-2-(1H)-one – Cited by 56 (2012) πŸŽ¨πŸ’‘
  • Synthesis, spectral properties, biological activity and application of new 4-(benzyloxy) phenol derived azo dyes for polyester fiber dyeing – Cited by 52 (2013) πŸ§΅πŸ’§
  • Solvatochromism, tautomerism and dichroism of some azoquinoline dyes in liquids and liquid crystals – Cited by 52 (2012) πŸ”¬πŸŒˆ
  • Photo-physical and structural studies of some synthesized arylazoquinoline dyes – Cited by 36 (2017) πŸŒžπŸ”¬
  • Solvatochromism and dichroism of fluorinated azoquinolin-8-ol dyes in liquid and liquid crystalline solutions – Cited by 36 (2008) πŸŒπŸ“˜
  • Novel azo dyes derived from 8-methyl-4-hydroxyl-2-quinolone: Synthesis, UV–vis studies and biological activity – Cited by 34 (2013) πŸ§ͺπŸ’‘
  • Synthesis of 6-chloro and 6-fluoro-4-hydroxyl-2-quinolone and their azo disperse dyes – Cited by 30 (2010) πŸŒŸπŸ”¬

 

Harbi Al-Masri | Chemistry | Research Frontier Explorer Award

Prof Dr. Harbi Al-Masri | Chemistry | Research Frontier Explorer Award

Jordan at Al al-Bayt university, Jordan

Prof. Dr. Harbi Tomah Al-Masri is a distinguished Professor of Inorganic and Organometallic Chemistry at Al al-Bayt University in Jordan. With a Ph.D. from the University of Leipzig, he has a strong academic background complemented by extensive teaching experience at various universities. His research focuses on homogeneous catalysis, biological and medicinal chemistry, and organosulfur chemistry, with numerous publications and a noteworthy H-index of 12. He has held leadership roles, including Vice Dean of Scientific Deanship and Head of the Department of Chemistry, while also actively supervising graduate students. Dr. Al-Masri has received multiple awards for research excellence and has been involved in numerous international conferences, highlighting his contributions to the field of chemistry.

Publication profile

Scopus Profile

Education Background

Prof. Dr. Harbi Tomah Al-Masri holds an extensive academic background in chemistry, specializing in Inorganic and Organometallic Chemistry. He earned his Ph.D. from the University of Leipzig in Germany from 2000 to 2003, where he graduated magna cum laude for his dissertation on novel boron compounds. Prior to that, he completed a Master’s degree in Chemistry at Yarmouk University, focusing on substituted cyclopentadienyl ruthenium complexes, and a Bachelor’s degree in Chemistry from the same institution. His academic journey reflects a strong foundation in both theoretical and practical aspects of chemistry, underscoring his expertise and commitment to the field.

Research Experience

Prof. Dr. Harbi Tomah Al-Masri has extensive research experience in the field of inorganic and organometallic chemistry, focusing on homogeneous catalysis with mono- and multinuclear transition metal complexes. His work explores compounds featuring reactive metal-phosphorus (M-P) or metal=phosphorus (M=P) bonds, emphasizing bifunctional ligands that facilitate cooperative effects between metals. Additionally, his research delves into biological and medicinal chemistry, particularly the use of boron derivatives for boron neutron capture therapy (BNCT) and phosphine transition metal derivatives for cancer therapy. He is also involved in studies related to main group chemistry and the chemistry of organoselenium and organosulfur compounds. Dr. Al-Masri’s research has resulted in numerous publications and presentations at international conferences, reflecting his significant contributions to advancing knowledge in his field.

Teaching and Mentoring Experience

Prof. Dr. Harbi Tomah Al-Masri has a robust teaching and mentoring background, spanning over two decades across various academic institutions. Currently, as a Professor in the Department of Chemistry at Al al-Bayt University, he has taught a wide range of undergraduate and graduate courses in Inorganic Chemistry, including specialized topics and practical labs. His dedication to student development is evident through his supervision of numerous Master’s theses, guiding students in their research projects focused on synthesis and characterization of inorganic compounds. Previously, he held positions as an Assistant Professor and part-time lecturer in institutions such as Taibah University and Yarmouk University, where he also contributed to developing and coordinating curricula. Dr. Al-Masri’s commitment to fostering student learning is complemented by his roles in academic administration, further highlighting his capability as an educator and mentor in the field of chemistry.

Work Experience

Prof. Dr. Harbi Tomah Al-Masri is a distinguished academic with extensive experience in teaching and research in the field of Inorganic and Organometallic Chemistry. He currently serves as a Professor and Vice Dean of the Scientific Deanship at Al al-Bayt University in Mafraq, Jordan, a position he has held since 2022. Previously, he held various roles at the same university, including Assistant Dean of Students and Head of the Department of Chemistry. His academic career began with teaching assistant roles at multiple institutions, culminating in an Assistant Professor position at Taibah University in Saudi Arabia from 2004 to 2014. Prof. Al-Masri has also contributed significantly to student supervision, overseeing numerous MSc theses. In addition to his teaching responsibilities, he has been actively involved in research, focusing on homogeneous catalysis, biological and medicinal chemistry, and organosulfur and organoselenium chemistry, which has led to numerous publications and research grants throughout his career.

Awards, Honours & Certificates

Prof. Dr. Harbi Tomah Al-Masri has received numerous awards and honors throughout his academic career, highlighting his contributions to the field of chemistry. His accolades include multiple commendations for academic excellence from the Dean’s Office at Taibah University, KSA, as well as the Dean’s commendation for research excellence. He was awarded the Deanship of Scientific Research Prize for research excellence in 2013 and the Al al-Bayt commendation for research excellence in 2021. Additionally, he has secured several research grants, including a one-year project funded by the Deanship of Scientific Research at Taibah University and a three-year project at Al al-Bayt University, demonstrating his successful leadership as a principal investigator. His early academic achievements were recognized with the Honors List Award from Yarmouk University during his undergraduate studies and the Department of Chemistry Graduate Award during his Master’s program. Overall, these honors reflect his dedication to advancing knowledge in chemistry and his commitment to educational excellence.

Publication Top Notes

  • Title: The influence of the pyridyl substituent in N-methyl-P,P-diphenyl-N-2-pyridinyl-phosphinous amide ligand on the coordination chemistry of group 6B metal carbonyl derivatives
    Authors: Tomah Al-Masri, H., Abdulkareem Eleimat, E., Almejled, A.A., Moussa, Z.
    Year: 2025
    Citations: 0
  • Title: Pd(II), Pt(II), and novel Hg(II) metal complexes of N-(diphenylphosphinothioyl)-2-(4-methylpyridyl) amine chelating ligand: Synthesis, characterization, X-ray structures and catalytic activity of Pd(II) derivative in the Suzuki cross-coupling reaction
    Authors: Tomah Al-Masri, H., Moussa, Z., Ali Almejled, A.
    Year: 2024
    Citations: 0
  • Title: Group 10B metal chlorides and chalcogenide derivatives of 2-(N-(diphenylphosphino)amino)-4-methylpyridine: Application of Pd(ΙΙ) derivative as pre-catalyst in the Suzuki cross-coupling reaction
    Authors: Tomah Al-Masri, H., Moussa, Z., Ali Almejled, A.
    Year: 2024
    Citations: 1
  • Title: Synthesis and Crystal Structures of Novel Group 6B Metal Carbonyl Complexes with N-(4-methyl-2-pyridinyl)-P,P-diphenylphosphinous Amide Ligand
    Authors: Al-Masri, H.T., Alrawashdeh, S.M., Almejled, A.A., Moussa, Z.
    Year: 2024
    Citations: 0
  • Title: Exclusive Solvent-Controlled Regioselective Catalytic Synthesis of Potentially Bioactive Imidazolidineiminodithiones: NMR Analysis, Computational Studies and X-ray Crystal Structures
    Authors: Moussa, Z., Saada, S., Paz, A.P., … Al-Masri, H.T., Ahmed, S.A.
    Year: 2024
    Citations: 0

Conclusion

Prof. Dr. Harbi Tomah Al-Masri embodies the qualities of an exceptional researcher deserving of the Best Researcher Award. His extensive academic credentials, diverse research interests, impressive publication record, and commitment to teaching and mentorship position him as a leader in the field of inorganic chemistry. While there are areas for improvement, particularly in enhancing international collaboration and public engagement, his strengths significantly outweigh these considerations. His contributions to scientific knowledge, along with his dedication to educating future scientists, mark him as a worthy candidate for this prestigious award.

Nabila BOUASLA | Chemistry | Best Scholar Award

Mrs. Nabila BOUASLA | Chemistry | Best Scholar Award

Mrs. Nabila BOUASLA, UniversitΓ© Chadli Bendjedid-El Tarf, Algeria

Based on the detailed curriculum vitae provided, Mrs. Nabila Bouasla appears to be a suitable candidate for the Research for Best Scholar Award. Here are some key points that support this opinion:

Publication profile

Google Scholar

Educational Background:

Mrs. Bouasla holds a Doctorate in Sciences in Chemistry, specializing in Physical Chemistry of materials, from the University Badji Mokhtar-Annaba. Her academic progression from a graduate diploma to a doctorate demonstrates a strong commitment to her field.

Research and Training:

She has participated in various specialized training programs, including short internships at the ITODYS laboratory in Paris and training in advanced analytical techniques such as Rietveld analysis and electrochemical impedance spectroscopy. These experiences indicate her dedication to staying updated with cutting-edge research methodologies.

Teaching and Mentorship:

Mrs. Bouasla has extensive teaching experience, ranging from assistant roles to lecturer positions. She has taught various chemistry modules, which demonstrates her ability to communicate complex concepts effectively. Moreover, her involvement in supervising student projects highlights her role in mentoring and developing the next generation of scientists.

Research Supervision:

She has directed and examined multiple research projects at the undergraduate and master’s levels, covering diverse topics like environmental chemistry, phytochemistry, and corrosion studies. Her supervisory roles show her capability to guide significant research initiatives.

Scientific Contribution:

Mrs. Bouasla’s contribution to scientific research is evident from her supervision of projects that explore practical applications, such as the study of the inhibitory effects of natural substances on corrosion. These studies contribute to sustainable scientific practices and innovative material science research.

Publication Top Notes

Conclusion

Her strong educational background, research involvement, and teaching experience make her a commendable candidate for recognition in scholarly research.

 

kamal Al jorani | Chemistry | Industry Impact Academic Award

kamal Al jorani | Chemistry | Industry Impact Academic Award

Assist Prof Dr kamal Al jorani,Wasit University,Iraq

Assist. Prof. Dr. Kamal Rashid Al-Jorani is a renowned chemist specializing in organic, inorganic, and medicinal chemistry 🌟. He earned his PhD in Chemistry from the University of Mustansiriyah in 2019, focusing on benzimidazole derivatives. Dr. Al-Jorani is currently an Assistant Professor and Laboratory Head at the university’s Chemistry Department πŸ§ͺ. His expertise includes heterocyclic compound synthesis, drug synthesis, and coordination chemistry πŸ”¬. He has authored several notable publications, including works on novel heterocyclic compounds and their pharmacological properties πŸ“š. Dr. Al-Jorani’s research contributions have significant implications in both academic and pharmaceutical fields 🌍.

Publication profile

Orcid

Education

Kamal Rashid Al-Jorani’s academic journey spans through prestigious institutions, primarily the University of Mustansiriyah. He attained his Doctor of Philosophy in Chemistry in 2019, focusing on the synthesis, characterization, and preliminary pharmacological study of Benzimidazole Derivatives. Prior to his doctoral degree, Al-Jorani earned a Master’s in Chemistry in 2010, delving into the stability and stability constant of complexes formation between imidazole derivatives and various metal ions through potentiometric methods. His foundational academic achievement includes a Bachelor’s in Chemistry from the University of Mustansiriyah in 2008.

 

Teaching

Kamal Rashid Al-Jorani holds the esteemed position of Assistant Professor, reflecting his dedication to academia and his expertise in the field of chemistry. Currently, he serves as a pivotal figure in the Chemistry Department, where he undertakes the role of Teaching and Lab Head. His responsibilities extend to overseeing the instruction and practical application of Organic Chemistry concepts to third-year students. Moreover, he assumes leadership as the Lab Head for the Laboratory of Organic Chemistry, further enriching the educational experience for aspiring chemists within the department. Through his roles, Al-Jorani contributes significantly to the development and enhancement of academic programs and laboratory practices.

Research focus

Kamal Rashid Al-Jorani is a researcher whose focus lies in medicinal and pharmaceutical chemistry. His work primarily centers on the synthesis and characterization of heterocyclic compounds, particularly those involving benzimidazole and imidazole derivatives. These compounds are often explored for their pharmacological potential and applications in areas such as drug synthesis and antibacterial activity. Additionally, he delves into coordination chemistry to study metal complexes, which has implications for solar cell technology and other material sciences applications. His diverse expertise bridges organic chemistry and inorganic chemistry, addressing both biological and material challenges. πŸŒΏπŸ”¬πŸ’ŠπŸŒŸ

Publication top notes

Β 10.1016/j.kjs.2024.100271

Synthesis, Characterization, and Implementations for Dye Solar Cell of New Hematite Nanoparticles Using Tetrasubstituted Imidazole Containing a Benzimidazole Moiety

Synthesis, Characterization, and Implementations for Dye Solar Cell of New Hematite Nanoparticles Using Tetrasubstituted Imidazole Containing a Benzimidazole Moiety

Β 10.1007/s11224-022-02069-w

Synthesis, Structure Elucidation, and Pharmacological Study of New Hydrazinylidene Derivatives Using Benzimidazole as a Scaffold

Synthesis and characterization of a novel benzimidazole derivative: Solvatochromic and acid-base indicator applications

Irem kulu | Organic Chemistry | Best Researcher Award

Assoc Prof Dr. Irem kulu | Organic Chemistry | Best Researcher Award

Assoc Prof Dr. Irem kulu, Gebze Technical University, Turkey

Assoc. Prof. Dr. Δ°rem Kulu is an accomplished organic chemist with a PhD from YΔ±ldΔ±z Technical University, Turkey. Her expertise lies in C-C and C-N bond formation reactions of cyclic systems. With a diverse background including roles at Novartis and UMASS Amherst, she’s currently an Associate Professor at Gebze Technical University. Her research spans various projects, notably focusing on drug synthesis and bioorthogonal nanozymes. As a project coordinator and researcher, she contributes significantly to TÜBΔ°TAK-funded initiatives. πŸ§ͺπŸ”¬ Passionate about synthesizing novel compounds, her work holds promise for advancing medicinal chemistry.

Publication Profile:

Scopus

Google Scholar

 

Education:

Dr. Δ°rem Kulu is a dedicated scholar in organic chemistry, graduating from YΔ±ldΔ±z Technical University in Turkey. She completed her Bachelor of Science, Master of Science, and PhD degrees from the Department of Organic Chemistry at the same institution. Her research journey began with her Bachelor’s thesis focusing on the synthesis of organic compounds. In her Master’s thesis, she explored Domino Heck type Hydroarylation reactions and new isoindolines. For her doctoral work, she delved into C-C and C-N bond formation reactions of cyclic systems. Under the guidance of Prof. Dr. Zehra NΓΌket Γ–cal Sunguroğlu, she demonstrated a keen interest in advancing organic synthesis. πŸŽ“πŸ”¬

 

Experience :

Dr. Δ°rem Kulu’s career spans diverse roles in academia and industry, showcasing her expertise in organic chemistry. She began as a post-doctoral researcher at Gebze Technical University, contributing to TÜBΔ°TAK projects focused on hybrid materials synthesis. Transitioning to industry, she served as a Synthesis Chemist at Novartis, specializing in API synthesis. Her academic journey continued as an Assistant Professor at Gebze Technical University, where she eventually ascended to Associate Professor. Notably, she pursued post-doctoral research at UMASS Amherst, delving into bioorthogonal nanozymes. Her multifaceted experience reflects a commitment to advancing chemical science across academia and industry. πŸ”¬πŸ‘©β€πŸ”¬

Research Focus:

Dr. Δ°rem Kulu’s research primarily focuses on organic synthesis and medicinal chemistry, as evidenced by her extensive publication record. She has contributed significantly to the development of novel compounds with potential pharmacological applications, including antidepressants, antimicrobials, and anticancer agents. Her work spans various synthetic methodologies, such as Domino-Heck reactions, reductive Heck reactions, and [3+2] cycloadditions, aiming to create diverse molecular architectures. Additionally, she explores the physicochemical properties and biological activities of synthesized compounds, particularly their interactions with metal ions and their potential as photosensitizers. Dr. Kulu’s research embodies a quest for innovative solutions in drug discovery and development. πŸ’ŠπŸ”¬

Publication Top Notes:

  1. Domino‐HeckΒ Reactions of Carba‐ and Oxabicyclic, Unsaturated Dicarboximides: Synthesis of Aryl‐Substituted, Bridged Perhydroisoindole Derivatives πŸ“š Cited by: 25 πŸ—“οΈ Year: 2009
  2. The synthesis of epiboxidine and related analogues as potential pharmacological agents πŸ“š Cited by: 20 πŸ—“οΈ Year: 2011
  3. A multidisciplinary approach to coronavirus disease (COVID-19) πŸ“š Cited by: 16 πŸ—“οΈ Year: 2021
  4. Effects of metal ion in cationic Pd (II) and Ni (II) phthalocyanines on physicochemical and photodynamic inactivation propertiesπŸ“š Cited by: 15 πŸ—“οΈ Year: 2022
  5. Design, synthesis and biological evaluation of 8-aminoquinoline-1, 2, 3-triazole hybrid derivatives as potential antimicrobial agentsπŸ“š Cited by: 14 πŸ—“οΈ Year: 2022
  6. Reductive Heck Reactions and [3+ 2] Cycloadditions of Unsaturated N, N’-Bistricyclic Imides
  7. Evaluation of phytochemical content, antioxidant, antimicrobial activity and DNA cleavage effect of endemicΒ Linaria corifolia Desf. (Plantaginaceae)
  8. Synthesis of arylated norbornyl amino acid esters
  9. Hybrid materials based on pyrene-substituted metallo phthalocyanines as sensing layers for ammonia detection: Effect of the number of pyrene substituents
  10. Photodynamic Inactivation of Antibiotic-Resistant and SensitiveΒ Aeromonas hydrophilaΒ with Peripheral Pd(II)- vs. Zn(II)-Phthalocyanines