Methyl on the bridge: 2-methyl propellane as precursor for 1,3-substituted 2-methylated bicyclo[1.1.1]pentanes"
Methyl on the bridge: 2-methyl propellane as precursor for 1,3-substituted 2-methylated bicyclo[1.1.1]pentanes"
Bicyclo[1.1.1]pentanes (BCPs) have emerged as isosteric replacements for mono- and para-substituted benzene rings in medicinal and materials applications, involving substitution at the BCP bridgehead (1,3-positions). BCP functionalization at the 2-position is much less straightforward and currently under intense investigation. Herein, we report a synthetic route to 2-methyl BCPs allowing for functionalization at the 1,3-positions, with the novel 2-methyl[1.1.1]propellane as a key intermediate. Next to an optimization for the synthesis of 2-Me-propellane, this work contains an investigation of its reactivity leading to 1,2-disubstituted and 1,2,3-trisubstituted BCP derivatives. Compared to nonsubstituted propellane, the synthesis of 2-methyl propellane was lower-yielding, and its ring-opening reactions proceeded in similar or lower yields, with radical-based reactions generally giving the best results. A preliminary study of selected physicochemical properties was conducted to assess the impact of the introduction of a bridge-methyl group, showing an expected increase of about 0.5 logP units and featuring lower melting points.
Bicyclo[1.1.1]pentane, 2-methyl propellane, methyl, melting point, lipophilicity
Verschaeve, Sean R.
196fd357-d535-4b41-b8e6-7a56eeaa1e85
Gomes Manso, Mariana
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Van Eeckhoorn, Tibo
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Light, Mark E.
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Linclau, Bruno
19b9cacd-b8e8-4c65-af36-6352cade84ba
Verschaeve, Sean R.
196fd357-d535-4b41-b8e6-7a56eeaa1e85
Gomes Manso, Mariana
6c8ca2f0-b012-42d9-8d51-aa0824ba58cc
Van Eeckhoorn, Tibo
c122542f-e809-470f-8440-68401fd15d09
Light, Mark E.
cf57314e-6856-491b-a8d2-2dffc452e161
Linclau, Bruno
19b9cacd-b8e8-4c65-af36-6352cade84ba
Verschaeve, Sean R., Gomes Manso, Mariana, Van Eeckhoorn, Tibo, Light, Mark E. and Linclau, Bruno
(2025)
Methyl on the bridge: 2-methyl propellane as precursor for 1,3-substituted 2-methylated bicyclo[1.1.1]pentanes".
Chemistry - A European Journal, [e02396].
(doi:10.1002/chem.202502396).
Abstract
Bicyclo[1.1.1]pentanes (BCPs) have emerged as isosteric replacements for mono- and para-substituted benzene rings in medicinal and materials applications, involving substitution at the BCP bridgehead (1,3-positions). BCP functionalization at the 2-position is much less straightforward and currently under intense investigation. Herein, we report a synthetic route to 2-methyl BCPs allowing for functionalization at the 1,3-positions, with the novel 2-methyl[1.1.1]propellane as a key intermediate. Next to an optimization for the synthesis of 2-Me-propellane, this work contains an investigation of its reactivity leading to 1,2-disubstituted and 1,2,3-trisubstituted BCP derivatives. Compared to nonsubstituted propellane, the synthesis of 2-methyl propellane was lower-yielding, and its ring-opening reactions proceeded in similar or lower yields, with radical-based reactions generally giving the best results. A preliminary study of selected physicochemical properties was conducted to assess the impact of the introduction of a bridge-methyl group, showing an expected increase of about 0.5 logP units and featuring lower melting points.
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Chemistry A European J - 2025 - Verschaeve - Methyl on the Bridge 2‐Methyl Propellane as Precursor for 1 3‐Substituted
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Accepted/In Press date: 25 September 2025
e-pub ahead of print date: 15 October 2025
Keywords:
Bicyclo[1.1.1]pentane, 2-methyl propellane, methyl, melting point, lipophilicity
Identifiers
Local EPrints ID: 506376
URI: http://eprints.soton.ac.uk/id/eprint/506376
ISSN: 0947-6539
PURE UUID: e064d135-b61f-4af3-bb97-8b38782b5659
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Date deposited: 05 Nov 2025 17:43
Last modified: 06 Nov 2025 02:37
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Contributors
Author:
Sean R. Verschaeve
Author:
Mariana Gomes Manso
Author:
Tibo Van Eeckhoorn
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