Reversible Local Coordination Relaxation of Lattice-Embedded Rh Single Sites Enables Efficient and Durable Propene Hydroformylation.

Zhang R, Qu P, Ding L, Zhang L, Liu M, Niu T, Na X, Wang MY, Huang S, Qi J, Ma X

Open source

DOI
10.1021/jacs.6c10198
Published
2026 Aug 26
Container
Journal of the American Chemical Society
Publisher
Not recorded
Open access
unknown

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BibTeX

@article{allodium:10.1021/jacs.6c10198,
  title = {Reversible Local Coordination Relaxation of Lattice-Embedded Rh Single Sites Enables Efficient and Durable Propene Hydroformylation.},
  author = {Zhang R and Qu P and Ding L and Zhang L and Liu M and Niu T and Na X and Wang MY and Huang S and Qi J and Ma X},
  year = {2026},
  journal = {Journal of the American Chemical Society},
  doi = {10.1021/jacs.6c10198},
  url = {https://doi.org/10.1021/jacs.6c10198}
}

RIS

TY  - JOUR
TI  - Reversible Local Coordination Relaxation of Lattice-Embedded Rh Single Sites Enables Efficient and Durable Propene Hydroformylation.
AU  - Zhang R
AU  - Qu P
AU  - Ding L
AU  - Zhang L
AU  - Liu M
AU  - Niu T
AU  - Na X
AU  - Wang MY
AU  - Huang S
AU  - Qi J
AU  - Ma X
PY  - 2026
JO  - Journal of the American Chemical Society
DO  - 10.1021/jacs.6c10198
UR  - https://doi.org/10.1021/jacs.6c10198
ER  - 

APA

R, Z., P, Q., L, D., L, Z., M, L., T, N., X, N., MY, W., S, H., J, Q., & X, M. (2026). Reversible Local Coordination Relaxation of Lattice-Embedded Rh Single Sites Enables Efficient and Durable Propene Hydroformylation.. Journal of the American Chemical Society. https://doi.org/10.1021/jacs.6c10198

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