Transesterification of the α-keto ester in methyl pheophorbide-a
Author:
Publisher
Elsevier BV
Subject
Organic Chemistry,Drug Discovery,Biochemistry
Reference8 articles.
1. Photoinduced electron transfer in supramolecular systems for artificial photosynthesis
2. A chemical approach towards photosynthetic reaction center (2)
3. Ultrafast carotenoid to pheophorbide energy transfer in a biomimetic model for antenna function in photosynthesis
4. Mimicking the photosynthetic triplet energy-transfer relay
5. Fucoxanthin-Pyropheophorbide and Zeaxanthin-Pyropheophorbide Dyads as New Models for Study on Carotenoid-Chlorophyll Excited State Interactions
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1. Determination of N‐centered stereochemistry in N22‐methylated chlorophyll‐a derivatives and their epimer‐dependent optical spectra;Chirality;2024-06
2. Metal-bipyridine supported on 3-aminopropyl-functionalized MK10: effect of a metalating agent on the catalytic activity in the transesterification of β-keto ester;RSC Advances;2024
3. Recent advances in the transesterification of β-keto esters;RSC Advances;2021
4. C–O, C–S, C–N, and C–C Bond Formation at the Periphery of the Macrocycle during Chemical Modification of Phytochlorins: Key Methods and Synthetic Applications;Russian Journal of General Chemistry;2019-12
5. Transesterification of Exocyclic Ester Group of Methyl Pheophorbide a;Russian Journal of General Chemistry;2019-09
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