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Shahar Dery

Hebrew University of Jerusalem · IL
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Area of research
Organic Chemistry · Electrical and Electronic Engineering
Research interest
Research focused on Reactivity (psychology) and Monolayer, with related work in Carbene, Selenocysteine, Electrochemistry. Notable publications include 'Insights into the deselenization of selenocysteine into alanine and serine', 'Electrochemical deposition of N-heterocyclic carbene monolayers on metal surfaces', and 'Chemical Synthesis of Proteins with Non‐Strategically Placed Cysteines Using Selenazolidine and Selective Deselenization'.
h-index
citations
801
works
26
NIH funding
primary concept
email

Recent publications

Mechanistic Insights Gained by High Spatial Resolution Reactivity Mapping of Homogeneous and Heterogeneous (Electro)Catalysts
Chemical Reviews 2023cited by 38position: firstdoi
Influence of Charged Self-Assembled Monolayers on Single Nanoparticle Collision
Analytical Chemistry 2023cited by 24position: middledoi
The influence of adsorption geometry on the reduction affinity of nitroaromatics on Au(111)
Physical Chemistry Chemical Physics 2022cited by 7position: middledoi
Influence of N-Substituents on the Adsorption Geometry of OH-Functionalized Chiral N-Heterocyclic Carbenes
Langmuir 2021cited by 29position: firstdoi
Site-Independent Hydrogenation Reactions on Oxide-Supported Au Nanoparticles Facilitated by Intraparticle Hydrogen Atom Diffusion
ACS Catalysis 2021cited by 21position: firstdoi
The influence of surface proximity on photoswitching activity of stilbene-functionalized N-heterocyclic carbene monolayers
Chemical Communications 2021cited by 20position: firstdoi
Shell–Matrix Interaction in Nanoparticle-Imprinted Matrices: Implications for Selective Nanoparticle Detection and Separation
ACS Applied Nano Materials 2021cited by 15position: middledoi
AFM-IR and s-SNOM-IR measurements of chemically addressable monolayers on Au nanoparticles
The Journal of Chemical Physics 2021cited by 14position: middledoi
Growth of Hybrid Chiral Thin Films by Molecular Layer Deposition Zinc/Cysteine as a Case Study
Advanced Materials Interfaces 2021cited by 9position: middledoi
IR Nanospectroscopy in Catalysis Research
ACS symposium series 2021cited by 3position: firstdoi
Electrochemical deposition of N-heterocyclic carbene monolayers on metal surfaces
Nature Communications 2020cited by 76position: middledoi
Site-dependent selectivity in oxidation reactions on single Pt nanoparticles
Physical Chemistry Chemical Physics 2020cited by 19position: firstdoi
Flexible NO<sub>2</sub>‐Functionalized N‐Heterocyclic Carbene Monolayers on Au (111) Surface
Chemistry - A European Journal 2019cited by 58position: firstdoi
Elucidating the Influence of Anchoring Geometry on the Reactivity of NO<sub>2</sub>-Functionalized N-Heterocyclic Carbene Monolayers
The Journal of Physical Chemistry Letters 2019cited by 46position: firstdoi
Strong Metal–Adsorbate Interactions Increase the Reactivity and Decrease the Orientational Order of OH-Functionalized N-Heterocyclic Carbene Monolayers
Langmuir 2019cited by 39position: firstdoi
Composition–Reactivity Correlations in Platinum–Cobalt Nanoporous Network as Catalyst for Hydrodeoxygenation of 5-Hydroxymethylfurfural
The Journal of Physical Chemistry C 2019cited by 15position: middledoi
Identifying site-dependent reactivity in oxidation reactions on single Pt particles
Chemical Science 2018cited by 38position: firstdoi
Identifying Catalytic Reactions on Single Nanoparticles
Topics in Catalysis 2018cited by 20position: firstdoi
Bimetallic Pt–Re Nanoporous Networks: Synthesis, Characterization, and Catalytic Reactivity
The Journal of Physical Chemistry C 2018cited by 20position: middledoi
X-ray tomography measurements identify structure-reactivity correlations in catalysts for oxygenates coupling reactions
Catalysis Today 2018cited by 13position: middledoi
Effect of matrix-nanoparticle interactions on recognition of aryldiazonium nanoparticle-imprinted matrices
Nano Research 2018cited by 10position: middledoi
Accessing human selenoproteins through chemical protein synthesis
Chemical Science 2016cited by 59position: middledoi
The Chemistry of Selenocysteine in Proteins
2016cited by 6position: middledoi
Insights into the deselenization of selenocysteine into alanine and serine
Chemical Science 2015cited by 111position: firstdoi
Chemical Synthesis of Proteins with Non‐Strategically Placed Cysteines Using Selenazolidine and Selective Deselenization
Angewandte Chemie International Edition 2015cited by 73position: middledoi
Chemical Synthesis of Proteins with Non‐Strategically Placed Cysteines Using Selenazolidine and Selective Deselenization
Angewandte Chemie 2015cited by 18position: middledoi

Grants

No grants ingested yet.

Frequent collaborators

Elad Gross · Hebrew University of Jerusalem21 papers (2018–2023)F. Dean Toste · University of California System7 papers (2018–2021)Linoy Dery · Hebrew University of Jerusalem6 papers (2015–2023) · 6 papers (2018–2022) · 6 papers (2018–2022) · 6 papers (2018–2022)Suhong Kim · Princeton University6 papers (2018–2020)Norman Metanis · Hebrew University of Jerusalem5 papers (2015–2016)Post Sai Reddy · Hebrew University of Jerusalem5 papers (2015–2016)Daniel Mandler · Hebrew University of Jerusalem4 papers (2018–2023)Reem Mousa · Hebrew University of Jerusalem3 papers (2015–2016)Daniel Feferman · Hebrew University of Jerusalem3 papers (2019–2021)Iris Berg · Hebrew University of Jerusalem3 papers (2019–2022)Einav Amit · Hebrew University of Jerusalem2 papers (2018–2020)Noam Tal-Perry · Hebrew University of Jerusalem2 papers (2018–2021)Mazal Carmiel-Kostan · Hebrew University of Jerusalem2 papers (2019–2021)David Haddad · Hebrew University of Jerusalem2 papers (2018–2019)Sally Nijem · Hebrew University of Jerusalem2 papers (2018–2019)Hillel Mehlman · Hebrew University of Jerusalem2 papers (2020–2021)Rebecca Notis Dardashti · Hebrew University of Jerusalem2 papers (2015–2016)
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