AA
Arlin Jose Amali
SASTRA University, Madurai Kamaraj University School of Chemistry, Pacific Northwest National Laboratory, National Institute of Advanced Industrial Science and Technology, Loyola College
Employment
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SASTRA University Assistant Professor2022 - Present
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Madurai Kamaraj University School of Chemistry DST-INSPIRE Faculty2013 - 2019
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Loyola College Lecturer2006 - 2007
Education
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Pacific Northwest National Laboratory Visiting Researcher2013 - 2013
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National Institute of Advanced Industrial Science and Technology AIST-Post Doctoral Fellow2012 - 2013
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Leibniz Institute for Catalysis DAAD- Short Term Reseacher2009 - 2010
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Indian Institute of Chemical Technology PhD2007 - 2012
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University of Madras Junior Research Fellow2004 - 2006
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The American College MSc2002 - 2004
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Holy Cross College BSc1999 - 2002
Projects & Funding
Projects & funding information is unavailable.
Publications (39)
- Establishing the Electrocatalytic HER Pathway of Indole N-Functionalized S∩N∩N Pincer Palladium(II) Complexes through Computational Mechanistic Analysis and Enabling Nitroarene Reduction Save
- Atomically Dispersed Ni–N Sites on N-Doped Carbon for Electrochemical Nitrite Detection Save
- Co–N2P2 single-atom catalysts enable efficient α-alkylation of aromatic ketones Save
- Confining Ni nanoclusters through Ni-N-C on porous carbon derived from Schiff-base polymer network for Suzuki–Miyaura coupling reactions Save
- Thiazoline Derived Orthometalated Palladium Pincer Complexes for Quinoline Synthesis via Acceptorless Dehydrogenation and Subsequent C(sp2)–C(sp2) Coupling Reactions: Experimental and Computational Perspectives Save
- Au‐Dotted Co Nanorods With Boosted Catalytic Performance for Suzuki–Miyaura and Stille Coupling Reactions Save
- Single-Atomic Co–N2O2 Sites to Construct Quinazolinone Scaffolds via Tandem Oxidation Save
- Exploring the Potential of Covalent Organic Frameworks to Combat Candida albicans Biofilm Formation and Persistence Save
- (κ3-N∩N∩N)-Palladium Pincer Complex-Catalyzed Synthesis of Quinazolin-4(3H)-Ones Through the Acceptorless Dehydrogenation Process: Experimental Results and Computational Insights Save
- Bio‐MOF‐11 Derived Amorphous Cobalt Hollow Nanospheres to Access Bioactive Quinazolinone Scaffolds and Aromatic Amines Save