Mechanism and origins of stereo- and enantioselectivities of palladium-catalyzed hydroamination of racemic internal allenes via dynamic kinetic resolution: a computational study
Literature Information
Zhenzhen Wu, Mei Zhang, Yu Shi, Genping Huang
Density functional theory calculations have been performed to investigate the Pd-catalyzed hydroamination of racemic internal allenes with pyrazoles. The computations show that the originally proposed reaction mechanisms initiated by the formation of the Pd(II)-hydride complexes are kinetically infeasible. Instead, it was suggested that the Pd(0) intermediate, generated by C–Cl bond formation via the outer-sphere nucleophilic attack, is the active catalyst of the reaction. The protonation of the central carbon of the Pd(0)-coordinated allene using pyrazole as the proton source followed by C–N bond formation through the outer-sphere nucleophilic attack of the pyrazole ligand on the η3-allyl ligand could afford the final hydroamination products. The outer-sphere nucleophilic attack constitutes the stereo- and enantioselectivity-determining step of the overall reaction. The experimentally observed stereo- and enantioselectivities were reproduced quite well by the calculations, which were found to be attributed to the steric and electronic effects. The steric repulsion between the phenyl group of the (R)-SEGPHOS ligand and the methylene group of the allene moiety, together with the additional C–H⋯π and C–H⋯N interactions, results in the (E)–(S)-transition state being more favorable than the other transition states, leading to the experimental outcomes.
Related Literature
Eco-design of the remembrance poppy: a life cycle assessment study
Andrea Paulillo, Martina Pucciarelli, Phil Prior, Paola Lettieri
DOI: 10.1039/D3SU00279A
Chemical composition and bioactivity of hemp, reed canary grass and common reed grown on boreal marginal lands
Jenni Tienaho, Hanna Brännström, Risto Korpinen, Juha-Matti Pihlava, Jarkko Hellström, Paula Jylhä, Jaana Liimatainen, Veikko Möttönen, Jyri Maunuksela, Petri Kilpeläinen
DOI: 10.1039/D3SU00255A
Sustainable production of prodigiosin from rice straw derived xylose by using isolated Serratia marcescens (CMS 2): statistical optimization, characterization, encapsulation & cost analysis
Kanika Miglani, Saumya Singh, Devendra Pratap Singh, Meena Krishania
DOI: 10.1039/D3FB00100H
Elucidating multiple reaction pathways for the degradation of antibiotics in water by a self-active single-atom zinc catalyst on biochar
Jieming Yuan, Yunkyoung Han, Krishnamoorthy Sathiyan, Virender K. Sharma, Abdol Hadi Mokarizadeh, Mesfin Tsige, Jiechao Jiang, Xingmao Ma
DOI: 10.1039/D3SU00265A
Evaluation of the bioprotective potential of gastrointestinal digest fractions of Arthrospira sp. and Nannochloropsis sp. suspensions treated with high pressure homogenisation
Biniam Kebede
DOI: 10.1039/D3FB00193H
Understanding improved capacity retention at 4.3 V in modified single crystal Ni-rich NMC//graphite pouch cells at elevated temperature
Satish Bolloju, Eleni Fiamegkou, Nickil Shah, Mateusz Jan Zuba, Tien-Lin Lee, Pardeep K. Thakur, Melanie J. Loveridge
DOI: 10.1039/D3LF00093A
Developing 3D computational models to capture the spatial, temporal and thermal behavior as laser beams propagate through photo-thermally responsive gels
Victor V. Yashin, Fariha Mahmood, Kalaichelvi Saravanamuttu, Anna C. Balazs
DOI: 10.1039/D3LF00156C
Development of strong and high-barrier food packaging films from cyclic-anhydride modified bacterial cellulose
Zhuolun Jiang, Ka Man Cheung, To Ngai
DOI: 10.1039/D3SU00219E
Structure and properties of biobased polyamide 36,9/cellulose nanocomposites
Biqiong Chen
DOI: 10.1039/D3SU00302G
You might also like
What industries use (1R,3S)-1,3-Cyclopentanediol (CAS: 16326-97-9)?
(1R,3S)-1,3-Cyclopentanediol finds applications in various industries. In the ph...
What precautions should be taken when handling N'-[4-(Dimethylamino)phenyl]-N,N-dimethyl-1,4-benzenediamine (CAS: 637-31-0)?
When handling N'-[4-(Dimethylamino)phenyl]-N,N-dimethyl-1,4-benzenediamine, it i...
Are there alternatives to 5-(2,4-Difluorophenyl)-2-methoxypyrimidine (CAS: 1352318-16-1) in synthesis?
There are several alternatives to 5-(2,4-Difluorophenyl)-2-methoxypyrimidine in ...
What regulatory guidelines apply to 1-(3-Methoxyphenoxy)propan-2-ol (CAS: 382141-68-6)?
1-(3-Methoxyphenoxy)propan-2-ol (CAS: 382141-68-6) must comply with the Globally...
Is Tetrodotoxin Citrate (CAS: 18660-81-6) safe?
Tetrodotoxin Citrate is extremely dangerous and should be handled with extreme c...
What are the main uses of 2-Methyl-2-propanyl [(1R,3S)-3-hydroxycyclopentyl]carbamate (CAS: 225641-84-9)?
2-Methyl-2-propanyl [(1R,3S)-3-hydroxycyclopentyl]carbamate (CAS: 225641-84-9) i...
How should waste containing 4-(2-Hydroxyhexafluoroisopropyl)Benzoic Acid (CAS: 16261-80-6) be handled?
Waste containing 4-(2-Hydroxyhexafluoroisopropyl)Benzoic Acid (CAS: 16261-80-6) ...
How is 2-Methyl-2-proanyl {(2S)-1-[(benzyloxy)amino]-3-hydroxy-3-methyl-1-oxo-2-butanyl}carbamate (CAS: 102507-19-7) typically synthesized?
2-Methyl-2-proanyl {(2S)-1-[(benzyloxy)amino]-3-hydroxy-3-methyl-1-oxo-2-butanyl...
What is Benzeneethanamine, α-ethyl-, hydrochloride (1:1) (CAS: 20735-15-3)?
Benzeneethanamine, α-ethyl-, hydrochloride (1:1) is an organic compound with the...
Are there alternatives to 3-{(E)-[4-(Dimethylamino)phenyl]diazenyl}benzoic acid (CAS: 20691-84-3) in synthesis?
In the synthesis of compounds similar to 3-{(E)-[4-(Dimethylamino)phenyl]diazeny...
Source Journal
Organic Chemistry Frontiers

Organic Chemistry Frontiers publishes high-quality research from across organic chemistry. Emphases are placed on studies that make significant contributions to the field of organic chemistry by reporting either new or significantly improved protocols or methodologies. Topics include, but are not limited to the following: Organic synthesis Development of synthetic methodologies Catalysis Natural products Functional organic materials Supramolecular and macromolecular chemistry Physical and computational organic chemistry










![N,N'-1,2-Ethanediylbis[2-(vinylsulfonyl)acetamide] structure N,N'-1,2-Ethanediylbis[2-(vinylsulfonyl)acetamide] structure](https://static.chemtradehub.com/structs/667/66710-66-5-b556.webp)


![Ethyl 3-((6-(4,5-dihydro-1H-benzo[d]azepin-3(2H)-yl)-2-(pyridin-2-yl)pyrimidin-4-yl)amino)propanoate structure Ethyl 3-((6-(4,5-dihydro-1H-benzo[d]azepin-3(2H)-yl)-2-(pyridin-2-yl)pyrimidin-4-yl)amino)propanoate structure](https://static.chemtradehub.com/structs/137/1373423-53-0-496a.webp)
