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catalysis
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Freixa's Group - light-tunable organometallic compounds
The Selander Research Group
pericas group - green approaches to catalysis for fine chemicals
Bibliographies
[1]
Laser Ablation ICP-MS Analysis of Faviidae Corals for Environmental Monitoring of a Tropical Estuary
[2]
Reaction of aqueous Cu-Citrate with MnO2 birnessite: characterization of Mn dissolution, oxidation products and surface interactions
[3]
Visible light photoredox catalysis with transition metal complexes: applications in organic synthesis
[4]
authors index
[5]
Artificial Heme Enzymes for the Construction of Gold-Based Biomaterials
[6]
Enhancement of Peroxidase Activity in Artificial Mimochrome VI Catalysts through Rational Design
[7]
Tuning Mechanism through Buffer Dependence of Hydrogen Evolution Catalyzed by a Cobalt Mini-enzyme
[8]
De Novo Design of Four-Helix Bundle Metalloproteins: One Scaffold, Diverse Reactivities
[9]
Oxidation catalysis by iron and manganese porphyrins within enzyme-like cages
[10]
Chiral Mesoporous Silica Materials: A Review on Synthetic Strategies and Applications
[11]
Catalytic and Biocatalytic Iron Porphyrin Carbene Formation: Effects of Binding Mode, Carbene Substituent, Porphyrin Substituent, and Protein Axial Ligand
[12]
Studies on Aromatic Trichromophore Systems Incorporating Anthracene Moieties. II. Crystal Structures of 2-(9-Anthryl)-1-(9-anthrylmethyl)ethyl 2-(9-Phenanthryl)-ethyl Succinate (A2PHEN) and 2-(9-Anthryl)-1-(9-anthrylmethyl)ethyl Methyl Succinate (A2SC) and Their Fluorescence in the Solid State
[13]
Olefin cyclopropanation via carbene transfer catalyzed by engineered cytochrome P450 enzymes
[14]
Application of a fluorometric assay for characterization of the catalytic competency of a domain III fragment of Pseudomonas aeruginosa exotoxin A
[15]
Exotoxin A-eEF2 complex structure indicates ADP ribosylation by ribosome mimicry
[16]
Green Biosynthesis of Silver Nanoparticles Using (Thunb.) Leaf Extract for Reductive Catalysis.
[17]
One-step synthesis of size-tunable gold nanoparticles/reduced graphene oxide nanocomposites using argon plasma and their applications in sensing and catalysis
[18]
Needs and Gaps for Catalysis in Addressing Transitions in Chemistry and Energy from a Sustainability Perspective.
[19]
Cu-CHA - a model system for applied selective redox catalysis.
[20]
Small-Pore Zeolites: Synthesis and Catalysis.
[21]
From Palladium to Gold Catalysis for the Synthesis of Crushed Fullerenes and Acenes.
[22]
AIC Gold Medal: H. F. Schaefer / Netherlands Catalysis and Chemistry Award: M. Koper / Netherlands Awards for Supramolecular Chemistry
[23]
Terpyridine-metal complexes: Applications in catalysis and supramolecular chemistry
[24]
Yolk-shell nanocrystal@ZIF-8 nanostructures for gas-phase heterogeneous catalysis with selectivity control.
[25]
Cross-coupling of C(sp)-H Bonds with Organometallic Reagents via Pd(II)/Pd(0) Catalysis**
[26]
Interplay of arene radical cations with anions and fluorinated alcohols in hole catalysis
[27]
Temperature-Controlled Catalysis by Core-Shell-Satellite AuAg@pNIPAM@Ag Hybrid Microgels: A Highly Efficient Catalytic Thermoresponsive Nanoreactor.
[28]
Comparative study of cross-linked and linear thermo-responsive carriers supported palladium nanoparticles in the reduction of 4-nitrophenol: Structure, catalytic activity and responsive catalysis property
[29]
Treatment Efficiency by means of a Nonthermal Plasma Combined with Heterogeneous Catalysis of Odoriferous Volatile Organic Compounds Emissions from the Thermal Drying of Landfill Leachates
[30]
Effect of lignin degradation product sinapyl alcohol on laccase catalysis during lignin degradation
[31]
The second conserved motif in bacterial laccase regulates catalysis and robustness
[32]
1,2-Boron Shifts of β-Boryl Radicals Generated from Bis-Boronic Esters using Photoredox Catalysis.
[33]
Efficient Use of Photons in Photoredox/Enamine Dual Catalysis with a Peptide-Bridged Flavin-Amine Hybrid.
[34]
Transition metal-free phosphonocarboxylation of alkenes with carbon dioxide via visible-light photoredox catalysis
[35]
Enantioselective benzylic C–H arylation via photoredox and nickel dual catalysis
[36]
Dehydrogenative Silylation of Alkenes for the Synthesis of Substituted Allylsilanes by Photoredox, Hydrogen-Atom Transfer, and Cobalt Catalysis
[37]
Regioselective and Stereoselective Difluoromethylation of Enamides with Difluoromethyltriphenylphosphonium Bromide via Photoredox Catalysis
[38]
Direct access to 2-difluoromethyl indoles via photoredox catalysis
[39]
Gold nanorods-based hybrids with tailored structures for photoredox catalysis: fundamental science, materials design and applications
[40]
Annulation of Benzamides with Arynes Using Palladium with Photoredox Dual Catalysis
[41]
Merging photoredox catalysis with transition metal catalysis: Direct C4-H amination of 8-hydroxyquinoline derivatives
[42]
Reversible Hydrogel Photopatterning: Spatial and Temporal Control over Gel Mechanical Properties Using Visible Light Photoredox Catalysis
[43]
Visible-Light-Induced Ring-Opening of Hydrogenolysis Spirocyclopropyl Oxindoles Through Photoredox Catalysis
[44]
Direct C–H trifluoromethylation of di- and trisubstituted alkenes by photoredox catalysis
[45]
Tandem copper and photoredox catalysis in photocatalytic alkene difunctionalization reactions
[46]
Direct allylic C–H alkylation of enol silyl ethers enabled by photoredox–Brønsted base hybrid catalysis
[47]
Bioproduction of High-Concentration 4-Vinylguaiacol Using Whole-Cell Catalysis Harboring an Organic Solvent-Tolerant Phenolic Acid Decarboxylase From .
[48]
BN-Doped Graphene and Single-Walled Carbon Nanotubes for the Catalysis of S2 Reactions: Insights From DFT Modeling.
[49]
Metal-free catalysis based on nitrogen-doped carbon nanomaterials: a photoelectron spectroscopy point of view
[50]
Tandem arylation and regioselective allylic etherification of 2,3-allenol via Pd/B cooperative catalysis.
[51]
Peroxide-driven catalysis of the heme domain of A. radioresistens cytochrome P450 116B5 for sustainable aromatic rings oxidation and drug metabolites production.
[52]
A Two-Dimensional MoS2 Catalysis Transistor by Solid-State Ion Gating Manipulation and Adjustment (SIGMA).
[53]
Optimizing ligand structure for low-loading and fast catalysis for alkynyl-alcohol and -amine cyclization.
[54]
Metal-Organic Frameworks for Photocatalysis and Photothermal Catalysis.
[55]
Gold nanomaterials as key suppliers in biological and chemical sensing, catalysis, and medicine.
[56]
Asymmetric Synthesis of 1,4-Dicarbonyl Compounds from Aldehydes via the Marriage of Hydrogen Atom Transfer Photocatalysis with Chiral Lewis Acid Catalysis.
[57]
Geometric E→Z Isomerisation of Vinyl Silanes by Selective Energy Transfer Catalysis: Stereodivergent Synthesis of Triarylethylenes via a Formal Anti-Metallometallation.
[58]
Iodosylbenzene Coordination Chemistry Relevant to Metal-Organic Framework Catalysis
[59]
Unfolding adsorption on metal nanoparticles: Connecting stability with catalysis.
[60]
Orthogonal Nanoparticle Catalysis with Organogermaniums.
[61]
A nanofluidic device for parallel single nanoparticle catalysis in solution.
[62]
N-Heterocyclic Olefin Catalysis for the Ring Opening of Cyclic Amidine Compounds: A Pathway to the Synthesis of ϵ-Caprolactam- and γ-Lactam-Derived Amines
[63]
Gel–based Controlled Synthesis of Silver Nanoparticles and Their Applications in Catalysis, Sensing and Environmental Remediation
[64]
Sunlight mediated synthesis of silver nanoparticles using redox phytoprotein and their application in catalysis and colorimetric mercury sensing
[65]
Metal Nanoclusters: New Paradigm in Catalysis for Water Splitting, Solar and Chemical Energy Conversion.
[66]
Balancing Bulkiness in Gold(I) Phosphino-triazole Catalysis.
[67]
Gold nanoparticles: assembly, supramolecular chemistry, quantum-size-related properties, and applications toward biology, catalysis, and nanotechnology
[68]
Exploiting Synergistic Catalysis for an Ambient Temperature Photocycloaddition to Pyrazoles.
[69]
Effect of Building Block Transformation in Covalent Triazine Based Frameworks for Enhanced CO2 Uptake and Metal Free Heterogeneous Catalysis.
[70]
Multifunctional Tubular Organic Cage-Supported Ultrafine Palladium Nanoparticles for Sequential Catalysis.
[71]
Asymmetric Organocatalysis Combined with Palladium Catalysis: Synergistic Effect on Enantioselective Mannich/α-Allylation Sequential Reactions of Pyrazolones in Constructing Vicinal Quaternary Stereocenters.
[72]
Auto-cleaning paper-based electrochemiluminescence biosensor coupled with binary catalysis of cubic CuO-Au and polyethyleneimine for quantification of Ni and Hg.
[73]
Magnetically Recoverable Catalysts: Catalysis in Synthesis of Polyhydroquinolines
[74]
Engineering a more sustainable world through catalysis and green chemistry.
[75]
The Hexameric Resorcinarene Capsule at Work: Supramolecular Catalysis in Confined Spaces
[76]
Structure-based mechanism of cysteine-switch latency and of catalysis by pappalysin-family metallopeptidases.
[77]
Heteroannulation enabled by a bimetallic Rh(iii)/Ag(i) relay catalysis: application in the total synthesis of aristolactam BII.
[78]
Al(Salen) Metal Complexes in Stereoselective Catalysis
[79]
Facile synthesis of mesoporous anatase/rutile/hematite triple heterojunctions for superior heterogeneous photo-Fenton catalysis
[80]
Selective aerobic oxidation of sulfides by cooperative polyimide-titanium dioxide photocatalysis and triethylamine catalysis.
[81]
Overview and role of physical techniques inchemistry and catalysis
[82]
Small molecules derived carbon dots: synthesis and applications in sensing, catalysis, imaging, and biomedicine.
[83]
Structural Dynamics of Lytic Polysaccharide Monooxygenase during Catalysis.
[84]
A Study on removal of Methylene Blue dye by photo catalysis integrated with nanofiltration using statistical and experimental approaches.
[85]
Ruthenium(II) complexes of pyridine-carboxamide ligands bearing appended benzothiazole/benzimidazole rings: Structural diversity and catalysis
[86]
Facile one-pot synthesis of gold nanoparticles using tannic acid and its application in catalysis
[87]
Chemistry glows green with photoredox catalysis
[88]
Efficient and stable catalysis of hollow CuS nanospheres in the Fenton-like degradation of organic dyes.
[89]
ChemInform Abstract: Reactions of Phase-Transfer Catalysis. Part 1. Utilization of Polyoxyethylene Ethers.
[90]
Photoredox Catalysis in Organic Chemistry
[91]
The Synthesis of YNU-5 Zeolite and Its Application to the Catalysis in the Dimethyl Ether-to-Olefin Reaction
[92]
Visible light photoredox catalysis: applications in organic synthesis
[93]
First use of a divalent lanthanide for visible-light-promoted photoredox catalysis
[94]
Visible-light photoredox catalysis in flow
[95]
The effect of photocatalyst excited state lifetime on the rate of photoredox catalysis
[96]
Visible light photoredox catalysis: applications in organic synthesis
[97]
Visible light photoredox catalysis with transition metal complexes: applications in organic synthesis
[98]
cyclopropanation of 5-(1-bromo-2-phenyl-vinyl)-3-methyl-4-nitro-isoxazoles under phase transfer catalysis (ptc) conditions
[99]
convergent synthesis of n,s-bis glycosylquinolin-2-ones via a pd-g3-xantphos precatalyst catalysis
[100]
gold nanoparticle-biological molecule interactions and catalysis
[101]
treatment efficiency by means of a nonthermal plasma combined with heterogeneous catalysis of odoriferous volatile organic compounds emissions from the thermal drying of landfill leachates