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Isaac-Johannes Maksso
Isaac-Johannes Maksso
Ph.D Candidate, University of Göttingen
Verified email at gwdg.de
Title
Cited by
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Year
Chemodivergent manganese-catalyzed C–H activation: modular synthesis of fluorogenic probes
N Kaplaneris, J Son, L Mendive-Tapia, A Kopp, ND Barth, I Maksso, ...
Nature Communications 12 (1), 3389, 2021
712021
Rhodaelectro-catalyzed chemo-divergent C–H activations with alkylidenecyclopropanes for selective cyclopropylations
Z Shen, I Maksso, R Kuniyil, T Rogge, L Ackermann
Chemical Communications 57 (30), 3668-3671, 2021
222021
Polymer up-cycling by mangana-electrocatalytic C (sp 3)–H azidation without directing groups
I Maksso, RC Samanta, Y Zhan, K Zhang, S Warratz, L Ackermann
Chemical Science 14 (30), 8109-8118, 2023
182023
Photoelectrochemical Si–H and Ge–H activation by iron catalysis
W Wei, SL Homölle, T von Münchow, Y Li, I Maksso, L Ackermann
Cell Reports Physical Science 4 (9), 2023
172023
Electrochemical Cross‐Electrophile‐Coupling for Transition‐Metal‐Free Allylic Carboxylation with Ambient CO2
R Zhao, Z Lin, I Maksso, J Struwe, L Ackermann
ChemElectroChem 9 (21), e202200989, 2022
152022
Photoelectrochemical Iron-Catalyzed C(sp3)–H Borylation of Alkanes in a Position-Selective Manner
W Wei, B Wang, SL Homölle, J Zhu, Y Li, T von Münchow, I Maksso, ...
CCS Chemistry 6 (6), 1430-1438, 2024
132024
Photo‐Induced Ruthenium‐Catalyzed C− H Arylation Polymerization at Ambient Temperature
T Michiyuki, I Maksso, L Ackermann
Angewandte Chemie International Edition 63 (25), e202400845, 2024
32024
Manganese and Ruthenium Catalysis for Sustainable C–H Functionalizations and Polymer Synthesis
IJ Maksso
2024
Photoinduzierte Ruthenium‐katalysierte C− H Arylierungspolymerisation bei Raumtemperatur
T Michiyuki, I Maksso, L Ackermann
Angewandte Chemie 136 (25), e202400845, 2024
2024
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