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Faculty of Agriculture
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Personal Information
Position :
Assistant Lecturer
Department :
Soil Science
Specification :
Work Phone :
Email :
ahmed_elharairy@yahoo.com
E-Courses
Researches
1 - Research Title:
Comprehensive review of progress made in soil electrokinetic research during 1993–2020, part II. No.1: Materials additives for enhancing the intensification process during 2017–2020
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2 - Research Title:
Comprehensive review of progress made in soil electrokinetic research during 1993–2020, Part I: Process design modifications with brief summaries of main output
-
Download the file
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Google Scholar Researches
Artificial heterointerfaces achieve delicate reaction kinetics towards hydrogen evolution and hydrazine oxidation catalysis
Engineering electronic transfer dynamics and ion adsorption capability in dual-doped carbon for high-energy potassium ion hybrid capacitors
Vanadium Substitution Steering Reaction Kinetics Acceleration for Ni3N Nanosheets Endows Exceptionally Energy-Saving Hydrogen Evolution Coupled with�…
A Sulfone‐Containing Imidazolium‐Based Br�nsted Acid Ionic Liquid Catalyst Enables Replacing Dipolar Aprotic Solvents with Butyl Acetate
A Sulfone‐Containing Imidazolium‐Based Br�nsted Acid Ionic Liquid Catalyst Enables Replacing Dipolar Aprotic Solvents with Butyl Acetate
Novel non‐toxic and non‐hazardous solvent systems for the chemistry of indoles: use of a sulfone‐containing Br�nsted acid ionic liquid catalyst in butyl acetate
4-Aminoindoles as 1, 4-bisnucleophiles for diversity-oriented synthesis of tricyclic indoles bearing 3, 4-fused seven-membered rings
Comprehensive review of progress made in soil electrokinetic research during 1993–2020, Part I: process design modifications with brief summaries of main output
Modular Synthesis of Bicyclic and Tricyclic (Aza‐) Arenes from Nucleophilic (Aza‐) Arenes with Electrophilic Side Arms via [4+ 2] Annulation Reactions
Comprehensive review of progress made in soil electrokinetic research during 1993-2020, part II. No. 1: Materials additives for enhancing the intensification process during�…
Synthesis of α-indolylacrylates as potential anticancer agents using a Br�nsted acid ionic liquid catalyst and the butyl acetate solvent
Br�nsted acid-catalyzed facile synthesis of α-substituted N-arylaminoacetals and their downstream conversions to functionalized pyrroles
Utilizing the approaching/movement electrodes for optimizing the soil electrokinetic remediation: A comprehensive review
Carbon Dioxide Adsorption within Porous Porphyrin Networks
Aphid-Ant Relationships
Aphid-Ant Relationships: The Role of Cuticular Hydrocarbons and Different Chemical Stimuli in Triggering Mutualistic Behavior
Functionalization of copper for enhanced electrocatalytic reduction of carbon dioxide via ultrashort pulse laser surface processing
Aphid-ant Relationships: The Role of Cuticular Hydrocarbons and Different Chemical Stimuli
EPFL Valais/Wallis SEMINAR
Vanadium Substitution Steering Reaction Kinetics Acceleration for Ni₃N Nanosheets Endows Exceptionally Energy-Saving Hydrogen Evolution Coupled with Hydrazine Oxidation
Designing Br�nsted Acid Ionic Liquid Catalyst Enables Replacing Dipolar Aprotic Solvents with Butyl Acetate
A Sulfone-Containing Br�nsted Acid Ionic Liquid Catalyst Enables Replacing Dipolar Aprotic Solvents with Butyl Acetate for Transformations of Indoles and Anilines.
A sulfone-containing imidazolium-based Br�nsted acid ionic liquid catalyst enables replacing dipolar and aprotic solvents with butyl acetate