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”¬

 

Reem Obaydo| Green chemistry Award | Women Researcher Award

Dr. Reem Obaydo | Green chemistry Award | Women Researcher Award

Dr. Reem Obaydo, Ebla Private University, Faculty of Pharmacy, Syria

Based on the details provided, Dr. Reem Hasan Obaydo appears to be a suitable candidate for the Research for Women Researcher Award. Here’s a structured overview that supports this:

Publication profile

Academic and Professional Background

Dr. Reem Hasan Obaydo is a distinguished analytical chemist with over 15 years of experience, specializing in green chemistry and pharmaceutical sciences. Her expertise lies in sustainable practices, particularly in developing and validating analytical methods for drug testing. Dr. Obaydo is committed to advancing research aligned with Sustainable Development Goals (SDGs), focusing on health, clean water, and responsible production. Despite challenges in Syria, she has significantly contributed to the scientific community through her research, mentoring, and publications.

Research and Innovations

Dr. Obaydo has led notable research projects, including the development of Nano Green Sensors for Pharmaceutical Analysis and the replacement of hazardous solvents with eco-friendly alternatives in drug testing. Her work is recognized in high-impact journals such as “Sustainable Chemistry and Pharmacy.” She has also co-authored a book on green spectrophotometric methods and collaborates internationally on sustainable pharmaceutical practices. Dr. Obaydo’s contributions extend to editorial roles and mentoring, underscoring her impact in green chemistry and sustainability.

Contributions

Dr. Obaydo has made significant advancements in green chemistry, creating innovative methods that reduce environmental impact while maintaining accuracy in drug testing. Her research on nano green sensors and eco-friendly solvent replacements aligns with global sustainability goals and addresses pressing environmental issues. Additionally, her efforts in mentoring young researchers and fostering international collaborations highlight her dedication to promoting sustainable scientific practices.

Publication Top Notes

  • “Fingerprint Spectrophotometric Methods for the Determination of Co‐Formulated Otic Solution of Ciprofloxacin and Fluocinolone Acetonide in Their Challengeable Ratio” πŸ“Š – Cited by 35, 2019
  • “Spider chart and whiteness assessment of synergistic spectrophotometric strategy for quantification of triple combination recommended in seasonal influenza–Detection of …” πŸ•·οΈ – Cited by 34, 2023
  • “Spider diagram and sustainability evaluation of UV-methods strategy for quantification of aspirin and sildenafil citrate in the presence of salicylic acid in their bulk and …” πŸ“‰ – Cited by 26, 2023
  • “Spectrophotometric strategies for the analysis of binary combinations with minor component based on isoabsorptive point’s leveling effect: An application on ciprofloxacin and …” πŸ“ˆ – Cited by 24, 2019
  • “A green analytical method using algorithm (PCCA) for extracting components’ contribution from severely overlapped spectral signals in pharmaceutical mixtures” πŸƒ – Cited by 22, 2019
  • “Environmentally sustainable computationally spectrophotometric resolution strategy for analysis single-tablet regimens of antihypertension with overlapped spectra” 🌍 – Cited by 20, 2023
  • “Ziziphus spina-christi Leaf-Derived Carbon Dots as a Fluorescence Nanosensor to Evaluate Rifaximin Antibacterial via Inner Filter Effect: Greenness and …” 🌿 – Cited by 19, 2023
  • “Ultraviolet spectrophotometric methods for the determination of the minor component presented in fixed-dose pharmaceutical combinations through the last two decades (2000–2020)” 🌞 – Cited by 19, 2021
  • “Evaluation of assay and in-vitro dissolution profile of certain fixed-dose combination using green analytical method” πŸ§ͺ – Cited by 19, 2021
  • “Application of advanced environmentally benign assessment tools in determining ternary cardiovascular drug combination by RP-HPLC with analytical quality by design: application …” πŸ“Š – Cited by 16, 2023
  • “New spectral resolution techniques for resolving and determining the components in binary fixed-dose combinations” πŸ”¬ – Cited by 16, 2019
  • “Sustainable chromatographic quantitation of multi-antihypertensive medications: application on diverse combinations containing hydrochlorothiazide along with LC–MS/MS profiling …” πŸ’Š – Cited by 15, 2023
  • “Guidelines for accurate application of green and white analytical concepts: Merits vs demerits with insights of significant milestones of assessment tools applied for antiviral …” πŸ“˜ – Cited by 13, 2024
  • “Roth’s switch-on fluoremetric probe for green tracking and quantifying of 1.4-dihydropyridine medication: Evaluation of greenness, whiteness, and blueness” πŸ” – Cited by 13, 2023
  • “Whiteness and greenness assessment with efficacy evaluation of two UPLC systems applied for the quantification of cinnarizine and dimenhydrinate along with their toxic impurities” πŸ§ͺ – Cited by 12, 2023
  • “Integrative AQbD, up-to-date greenness, and whiteness tools for evaluation of a sustainable RP-HPLC method used for simultaneous separation of triple antihypertensive …” πŸ“Š – Cited by 10, 2023
  • “PCCA Algorithm as a fingerprint resolution technique for the analysis of ciprofloxacin in the presence of its acid induced degradation product” πŸ’‘ – Cited by 9, 2020
  • “Propylene carbonate as an ecofriendly solvent: Stability studies of Ripretinib in RPHPLC and sustainable evaluation using advanced tools” 🌱 – Cited by 8, 2024

Dr. Obaydo’s extensive experience, innovative research, and commitment to sustainability make her an excellent candidate for the Research for Women Researcher Award.