2017
DOI: 10.1021/acscatal.7b02306
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Enantioselective Incorporation of CO2: Status and Potential

Abstract: CO2 is a promising and sustainable carbon feedstock for organic synthesis. New catalytic protocols for efficient incorporation of CO2 into organic molecules are continuously reported. However, little progress has been made in the enantioselective conversion of CO2 to form enantioenriched molecules. In order to allow CO2 to become a versatile carbon source in academia, and in the fine chemical and pharmaceutical industries, the development of enantioselective approaches is essential. Here we discuss general str… Show more

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Cited by 117 publications
(54 citation statements)
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“…Among the many transformations of carbon dioxide into valuable chemicals, the synthesis of heterocycles undoubtedly plays an indisputable role, for the widespread presence of these moieties in new drugs and as building blocks for multistep synthesis [207,208]. The next future should address this research field towards sustainable methods such as the use of recoverable organocatalysts instead of precious metal ones, and towards asymmetric reaction [209], since most of the organic active pharmaceuticals are chiral molecules.…”
Section: Discussionmentioning
confidence: 99%
“…Among the many transformations of carbon dioxide into valuable chemicals, the synthesis of heterocycles undoubtedly plays an indisputable role, for the widespread presence of these moieties in new drugs and as building blocks for multistep synthesis [207,208]. The next future should address this research field towards sustainable methods such as the use of recoverable organocatalysts instead of precious metal ones, and towards asymmetric reaction [209], since most of the organic active pharmaceuticals are chiral molecules.…”
Section: Discussionmentioning
confidence: 99%
“…[1] Efficient catalytic technologies that utilize CO 2 as carbon feedstock would be favorable for mitigating globalw arming. [2,3] Compared to carbon capture and storage( CCS) techniques, carbon capturea nd utilization (CCU) techniques are more attractive, ast he captured CO 2 can be effectively converted to various valuable productss uch as urethanes, formic acid, dimethyl carbonate, and cyclic carbonates. [4][5][6][7][8][9][10] Ap rominent CO 2 fixation method is the atom-efficient cycloadditiono fe poxides to CO 2 to produce industrially and economically importantf ive-membered cyclic carbonates.…”
Section: Introductionmentioning
confidence: 99%
“…[47] Consequently,our method is anew example of diastereoselective fixation of CO 2 into ac yclic carbamate. [48] Furthermore, our approach is well-suited for late-stage organic synthesis (Scheme 3B). Deacetyl linezolid 2s,a na ntibiotic aliphatic amine, [10] gave 3s smoothly (74%)w ith full retention of the originalc hiral configuration.…”
mentioning
confidence: 99%