David Cantillo

David Cantillo

Karl-Franzens-Universität Graz

H-index: 30

Europe-Austria

About David Cantillo

David Cantillo, With an exceptional h-index of 30 and a recent h-index of 25 (since 2020), a distinguished researcher at Karl-Franzens-Universität Graz, specializes in the field of synthetic organic electrochemistry.

His recent articles reflect a diverse array of research interests and contributions to the field:

Recent Advances in Synthetic Organic Electrochemistry using Flow Systems

A low-volume flow electrochemical microreactor for rapid and automated process optimization

Design of Experiments-Based Optimization of an Electrochemical Decarboxylative Alkylation using a Spinning Cylinder Electrode Reactor

Development of an open-source flow-through cyclic voltammetry cell for real-time inline reaction analytics

An Automated Electrochemical Flow Platform to Accelerate Library Synthesis and Reaction Optimization

Scalable Quasi-Divided Cell Operation Using Spinning Cylinder Electrode Technology: Multigram Electrochemical Synthesis of an Axitinib Intermediate

Aniline derivatives from lignin under mild conditions enabled by electrochemistry

Scaling-up electroorganic synthesis using a spinning electrode electrochemical reactor in batch and flow mode

David Cantillo Information

University

Position

___

Citations(all)

4644

Citations(since 2020)

2667

Cited By

3006

hIndex(all)

30

hIndex(since 2020)

25

i10Index(all)

67

i10Index(since 2020)

57

Email

University Profile Page

Karl-Franzens-Universität Graz

Google Scholar

View Google Scholar Profile

David Cantillo Skills & Research Interests

synthetic organic electrochemistry

Top articles of David Cantillo

Title

Journal

Author(s)

Publication Date

Recent Advances in Synthetic Organic Electrochemistry using Flow Systems

David Cantillo

2024/2/6

A low-volume flow electrochemical microreactor for rapid and automated process optimization

Reaction Chemistry & Engineering

Eduardo Rial-Rodríguez

Johannes F Wagner

Hans-Michael Eggenweiler

Thomas Fuchss

Alena Sommer

...

2024

Design of Experiments-Based Optimization of an Electrochemical Decarboxylative Alkylation using a Spinning Cylinder Electrode Reactor

Nikola Petrović

Graham R Cumming

Christopher A Hone

María José Nieves-Remacha

Pablo García-Losada

...

2024/4/24

Development of an open-source flow-through cyclic voltammetry cell for real-time inline reaction analytics

Reaction Chemistry & Engineering

Eduardo Rial-Rodríguez

Jason D Williams

Hans-Michael Eggenweiler

Thomas Fuchss

Alena Sommer

...

2024

An Automated Electrochemical Flow Platform to Accelerate Library Synthesis and Reaction Optimization

Eduardo Rial-Rodríguez

Jason D Williams

David Cantillo

Thomas Fuchß

Alena Sommer

...

2024/4/9

Scalable Quasi-Divided Cell Operation Using Spinning Cylinder Electrode Technology: Multigram Electrochemical Synthesis of an Axitinib Intermediate

Organic Process Research & Development

Bhanwar K Malviya

Eric C Hansen

Caleb J Kong

Joseph Imbrogno

Jenson Verghese

...

2024/2/28

Aniline derivatives from lignin under mild conditions enabled by electrochemistry

ChemSusChem

Antonio A Castillo‐Garcia

Christian Oliver Kappe

David Cantillo

Katalin Barta

2024/2/8

Scaling-up electroorganic synthesis using a spinning electrode electrochemical reactor in batch and flow mode

Organic Process Research & Development

Nikola Petrovic

Bhanwar K Malviya

C Oliver Kappe

David Cantillo

2023/10/11

Electrochemical Nickel-Catalyzed C(sp3)–C(sp3) Cross-Coupling of Alkyl Halides with Alkyl Tosylates

Journal of the American Chemical Society

Malek YS Ibrahim

Graham R Cumming

Raquel Gonzalez de Vega

Pablo Garcia-Losada

Oscar de Frutos

...

2023/7/26

Control of a complex multistep process for the production of mesalazine

Journal of Process Control

Ismael Castillo

Jakob Rehrl

Peter Sagmeister

René Lebl

Julia Kruisz

...

2023/2/1

Electrifying Friedel–Crafts Intramolecular Alkylation toward 1, 1-Disubstituted Tetrahydronaphthalenes

The Journal of Organic Chemistry

Enrico Lunghi

Pietro Ronco

Federico Della Negra

Beatrice Trucchi

Massimo Verzini

...

2023/11/30

Metal‐Free Electrochemical Reduction of Disulfides in an Undivided Cell under Mass Transfer Control

Chemistry–A European Journal

Bhanwar K Malviya

Eric C Hansen

Caleb J Kong

Joseph Imbrogno

Jenson Verghese

...

2023/11/24

Multigram Electrochemical Hofmann Rearrangement Using a Spinning Three-Dimensional Anode

Organic Process Research & Development

Bhanwar K Malviya

Cecilia Bottecchia

Kevin Stone

Dan Lehnherr

François Lévesque

...

2023/11/6

Sustainable and Scalable Synthesis of Noroxymorphone via a Key Electrochemical N-Demethylation Step

Florian Sommer

Roman Gerber Aeschbacher

Urs Thurnheer

C Oliver Kappe

David Cantillo

2022/3/29

Synthesis of active pharmaceutical ingredients using electrochemical methods: keys to improve sustainability

David Cantillo

2022

Chemoselective electrochemical oxidation of secondary alcohols using a recyclable chloride-based mediator

Synlett

Florian Sommer

C Oliver Kappe

David Cantillo

2022/1

Scalable continuous flow hydrogenations using Pd/Al2O3-coated rectangular cross-section 3D-printed static mixers

Catalysis Today

René Lebl

Yutong Zhu

Derrick Ng

Christian H Hornung

David Cantillo

...

2022/1/1

Sustainable synthesis of noroxymorphone via a key electrochemical n-demethylation step

ACS Sustainable Chemistry & Engineering

Florian Sommer

Roman Gerber Aeschbacher

Urs Thurnheer

C Oliver Kappe

David Cantillo

2022/6/29

Electrochemical oxidation of alcohols using nickel oxide hydroxide as heterogeneous electrocatalyst in batch and continuous flow

Organic Process Research & Development

Wolfgang Jud

Chase A Salazar

Joseph Imbrogno

Jenson Verghese

Steven M Guinness

...

2022/4/24

Development and Assembly of a Flow Cell for Single‐Pass Continuous Electroorganic Synthesis Using Laser‐Cut Components

Chemistry‐Methods

Wolfgang Jud

C Oliver Kappe

David Cantillo

2021/1

See List of Professors in David Cantillo University(Karl-Franzens-Universität Graz)