We report binding studies of an octa-pyridinium super aryl-extended calix [4]pyrrole receptor with neutral difunctional aliphatic guests in water.The guests have terminal isonitrile and formamide groups,and the complexes displayan inclusion binding geometry and 1:1s toichiometry.U sing 1 HNMR titrations and ITC experiments,w ec haracterized the dissimilar thermodynamic and kinetic properties of the complexes.T he bis-isonitriles possess independent reacting groups,however,inthe presence of 1equiv of the receptor the hydrolysis reaction produces mixtures of non-statistical composition and as ignificant decrease in reaction rates.T he selectivity for the mono-formamide product is specially enhanced in the case of the bis-isonitrile having as pacer with five methylene groups.The analysis of the kinetic data suggests that the observed modifications in reaction rates and selectivity are related to the formation of highly stable inclusion complexes in whicht he isonitrile is hidden from bulk water molecules.T he concentration of the reacting substrates in the bulk solution is substantially reduced by binding to the receptor.I nt urn, the hydrolysis rates of the isonitrile groups for the bound substrates are slower than in the bulk solution. The receptor acts as both as equestering and supramolecular protecting group.