Follow
Prof. Mona Hosseini-Sarvari
Prof. Mona Hosseini-Sarvari
Nano Photocatalysis Lab, Department of Chemistry, Shiraz University, Shiraz, Iran
Verified email at shirazu.ac.ir
Title
Cited by
Cited by
Year
ZnO as a New Catalyst for N-Formylation of Amines under Solvent-Free Conditions
M Hosseini-Sarvari, H Sharghi
The Journal of Organic Chemistry 71 (17), 6652-6654, 2006
3482006
Reactions on a solid surface. A simple, economical and efficient Friedel− Crafts acylation reaction over zinc oxide (ZnO) as a new catalyst
MH Sarvari, H Sharghi
The Journal of organic chemistry 69 (20), 6953-6956, 2004
2822004
Zinc oxide (ZnO) as a new, highly efficient, and reusable catalyst for acylation of alcohols, phenols and amines under solvent free conditions
MH Sarvari, H Sharghi
Tetrahedron 61 (46), 10903-10907, 2005
1882005
TiO2 as a new and reusable catalyst for one-pot three-component syntheses of α-aminophosphonates in solvent-free conditions
M Hosseini-Sarvari
Tetrahedron 64 (23), 5459-5466, 2008
1632008
A direct synthesis of nitriles and amides from aldehydes using dry or wet alumina in solvent free conditions
H Sharghi, MH Sarvari
Tetrahedron 58 (52), 10323-10328, 2002
1382002
Nano sulfated titania as solid acid catalyst in direct synthesis of fatty acid amides
M Hosseini-Sarvari, E Sodagar, MM Doroodmand
The Journal of organic chemistry 76 (8), 2853-2859, 2011
1192011
Nanosized zinc oxide as a catalyst for the rapid and green synthesis of β-phosphono malonates
M Hosseini-Sarvari, S Etemad
Tetrahedron 64 (23), 5519-5523, 2008
1092008
ZnO/CH3COCl: A new and highly efficient catalyst for dehydration of aldoximes into nitriles under solvent-free condition
MH Sarvari
Synthesis, 787-790, 2005
1082005
Nanocrystalline ZnO for Knoevenagel Condensation and Reduction of the Carbon,Carbon Double Bond in Conjugated Alkenes
M Hosseini‐Sarvari, H Sharghi, S Etemad
Helvetica Chimica Acta 91 (4), 715-724, 2008
962008
Al2O3/MeSO3H (AMA) as a new reagent with high selective ability for monoesterification of diols
H Sharghi, MH Sarvari
Tetrahedron 59 (20), 3627-3633, 2003
892003
ZnO nanoparticles and multiwalled carbon nanotubes modified carbon paste electrode for determination of naproxen using electrochemical techniques
J Tashkhourian, B Hemmateenejad, H Beigizadeh, M Hosseini-Sarvari, ...
Journal of Electroanalytical Chemistry 714, 103-108, 2014
832014
Selective synthesis of E and Z isomers of oximes
H Sharghi, MH Sarvari
Synlett 2001 (01), 0099-0101, 2001
802001
Nano copper (i) oxide–zinc oxide catalyzed coupling of aldehydes or ketones, secondary amines, and terminal alkynes in solvent-free conditions
M Hosseini-Sarvari, F Moeini
New Journal of Chemistry 38 (2), 624-635, 2014
722014
Graphite as an efficient catalyst for one-step conversion of aldehydes into nitriles in dry media
H Sharghi, MH Sarvari
Synthesis 2003 (02), 0243-0246, 2003
722003
Catalyst-free organic transformations under visible-light
M Tavakolian, M Hosseini-Sarvari
ACS Sustainable Chemistry & Engineering 9 (12), 4296-4323, 2021
672021
Titania (TiO2)-Catalyzed Expedient, Solventless and Mild Synthesis of Bis(Indolyl)Methanes.
M Hosseini-Sarvari
Acta Chimica Slovenica 54 (2), 2007
672007
Synthesis of bis (indolyl) methanes using a catalytic amount of ZnO under solvent‐free conditions
M Hosseini‐Sarvari
Synthetic Communications 38 (6), 832-840, 2008
632008
Palladium supported on zinc oxide nanoparticles: Synthesis, characterization, and application as heterogeneous catalyst for Mizoroki–Heck and Sonogashira reactions under ligand …
M Hosseini-Sarvari, Z Razmi, MM Doroodmand
Applied Catalysis A: General 475, 477-486, 2014
622014
Synthesis of quinolines using Nano-Flake ZnO as a new catalyst under solvent-free conditions
M Hosseini-Sarvari
Journal of the Iranian Chemical Society 8, S119-S128, 2011
582011
Preparation, characterization, and catalysis application of nano-rods zinc oxide in the synthesis of 3-indolyl-3-hydroxy oxindoles in water
M Hosseini-Sarvari, M Tavakolian
Applied Catalysis A: General 441, 65-71, 2012
512012
The system can't perform the operation now. Try again later.
Articles 1–20