Area of research
Materials Chemistry · Physical and Theoretical Chemistry
Research interest
Research interests include Chemistry, Crystallography, Friedel–Crafts reaction, Intramolecular force, Dihedral angle, and Monoclinic crystal system.
Controlled synthesis of unsubstituted high molecular weight poly(<i>para</i>-phenylene) <i>via</i> Suzuki polycondensation-thermal aromatization methodology
The linkage between reversible Friedel–Crafts acyl rearrangements and the Scholl reaction
Friedel–Crafts acyl rearrangements in the fluoranthene series
Bis(benzyltrimethylammonium) bis[(4<i>SR</i>,12<i>SR</i>,18<i>RS</i>,26<i>RS</i>)-4,18,26-trihydroxy-12-oxido-13,17-dioxaheptacyclo[14.10.0.0<sup>3,14</sup>.0<sup>4,12</sup>.0<sup>6,11</sup>.0<sup>18,26</sup>.0<sup>19,24</sup>]hexacosa-1,3(14),6,8,10,15,19,21,23-nonaene-5,25-dione] sesquihydrate: dimeric structure formation<i>via</i>[O—H—O]<sup>−</sup><i>negative charge-assisted hydrogen bonds (–CAHB)</i>with benzyltrimethylammonium counter-ions
Potassium, Cesium, and Ammonium Peroxogermanates with Inorganic Hexanuclear Peroxo Bridged Germanium Anion Isolated from Aqueous Solution
Synthesis of Enantiomeric Aminoalkylcarbamoylphosphonates and Their Evaluation as Dual‐Action Anticancer MMP and Carbonic Anhydrase Inhibitors
Selenium- and tellurium-bridged heteromerous overcrowded bistricyclic aromatic enes with central six-member and seven-member rings
Variations of bistricyclic aromatic enes: mono-bridged tetraarylethene naphthologs
(±)-4,12,15,18,26-Pentahydroxy-13,17-dioxaheptacyclo[14.10.0.0<sup>3,14</sup>.0<sup>4,12</sup>.0<sup>6,11</sup>.0<sup>18,26</sup>.0<sup>19,24</sup>]hexacosa-1,3(14),6(11),7,9,15,19,21,23-nonaene-5,25-dione methanol disolvate
Erratum to: Naphthologs of overcrowded bistricyclic aromatic enes: (E)-bisbenzo[a]fluorenylidene
Reversible Friedel–Crafts acyl rearrangements of planar polycyclic aromatic ketones: dibenzofluorenones
Naphthologs of overcrowded bistricyclic aromatic enes: (E)-bisbenzo[a]fluorenylidene
Selective Recognition of the Higher Alkali Fluoride Ion Pairs by a Class of Coordination‐Driven Non‐Ditopic Ligands