Synthesis of biomolecule–modified mesoporous silica nanoparticles for targeted hydrophobic drug delivery to cancer cells, (D. P. Ferris, J. Lu, C. Gothard, R. Yanes, C. R. Thomas, J.–C. Olsen, J. F. Stoddart, F. Tamanoi, J. I. Zink), Small2011, 7, 1816—1826.
Mechanically interlocked mechanophores by living–radical polymerization from rotaxane initiators, (R. S. Stoll, D. C. Friedman, J. F. Stoddart), Org. Lett.2011, 13, 2706—2709.
A redox–active reverse donor–acceptor bistable [2]rotaxane, (S. K. Dey, A. Coskun, A. C. Fahrenbach, G. Barin, A. N. Basuray, A. Trabolsi Y. Y. Botros, J. F. Stoddart), Chem. Sci.2011, 2, 1046—1053.
Electrostatic barriers in rotaxanes and pseudorotaxanes, (M. Hmadeh, A. C. Fahrenbach, S. Basu, A. Trabolsi, D. Benítez, H. Li, A.–M. Albrecht–Gary, M. Elhabiri, J. F. Stoddart), Chem. Eur. J.2011, 17, 6076—6087.
Surface–enhanced raman spectroelectrochemistry of TTF–modified self–assembled monolayers, (W. F. Paxton, S. L. Kleinman, A. N. Basuray, J. F. Stoddart, R. P. Van Duyne), J. Phys. Chem. Lett.2011, 2, 1145—1149.
Monofunctionalized pillar[5]arene as a host for alkanediamines, (N. L. Strutt, R. S. Forgan, J. M. Spruell, Y. Y. Botros, J. F. Stoddart), J. Am. Chem. Soc.2011, 133, 5668—5671.
Solid-state structures and superstructures of two charged donor–acceptor rotaxanes, (Y.–L. Zhao, A.K. Shveyd, J. F. Stoddart), Tetrahedron Lett.2011, 52, 2044—2047.
Degenerate [2]rotaxanes with electrostatic barriers, (H. Li, Y.-L. Zhao, A. C. Fahrenbach, S.-Y. Kim, W. F. Paxton, J. F. Stoddart), Org. Biomol. Chem.2011, 9, 2240—2250.
Mechanically stabilized tetrathiafulvalene radical dimers, (A. Coskun, J. M. Spruell, G. Barin, A. C. Fahrenbach, R. S. Forgan, M. T. Colvin, R. Carmielli, D. Benítez, E. Tkatchouk, D. C. Friedman, A. A. Sarjeant, M. R. Wasielewski, W. A. Goddard III, J. F. Stoddart), J. Am. Chem. Soc.2011, 133, 4538—4547.
Optical and vibrational properties of toroidal carbon nanotubes, (F. Beuerle, C. Herrmann, A. C. Whalley, C. Valente, A. Gamburd, M. A. Ratner, J. F. Stoddart), Chem. Eur. J.2011, 17, 3868—3875.
Dual stimulus switching of a [2]catenane in water, (L. Fang, C. Wang, A. C. Fahrenbach, A. Trabolsi, Y. Y. Botros, J. F. Stoddart), Angew. Chem. Int. Ed.2011, 50, 1805—1809.
Microcontact click printing for templating ultrathin films of metal—organic frameworks, (J. J. Gassensmith, P. M. Erne, W. F. Paxton, C. Valente, J. F. Stoddart), Langmuir2011, 27, 1341—1345.
Donor—acceptor oligorotaxanes made to order, (S. Basu, A. Coskun, D. C. Friedman, M. A. Olson, D. Benítez, E. Tkachouk, G. Barin, J. Young, A. C. Fahrenbach, W. A. Goddard III, J. F. Stoddart), Chem. Eur. J.2011, 17, 2107—2119.
Syntheses and dynamics of donor—acceptor [2]catenanes in water, (L. Fang, S. Basu, C.–H. Sue, A. C. Fahrenbach, J. F. Stoddart), J. Am. Chem. Soc.2011, 133, 396—399.
A solid-state switch containing an electrochemically switchable bistable poly[n]rotaxane, (W. Zhang, E. DeIonno, W. Dichtel, L. Fang, A. Trabolsi, J.–C. Olsen, D. Benitéz, J. R. Heath, J. F. Stoddart), J. Mater. Chem.2011, 21, 1487—1495.
Imprinting chemical and responsive micropatterns into metal–organic frameworks, (S. Han, Y. Wei, C. Valente, R. S. Forgan, J. J. Gassensmith, R. A. Smaldone, H. Nakanishi, A. Coskun, J. F. Stoddart, B. A. Grzybowski), Angew. Chem. Int. Ed.2011, 50, 276—279.
A multistate switchable [3]rotacatenane, (G. Barin, A. Coskun, D. C. Friedman, M. A. Olson, M. T. Colvin, R. Carmielli, S. K. Dey, O. A. Bozdemir, M. R. Wasielewski, J. F. Stoddart), Chem. Eur. J.2011, 17, 213—222.
Solution-phase counterion effects in supramolecular and mechanostereochemical systems, (T. B. Gasa, C. Valente, J. F. Stoddart), Chem. Soc. Rev.2011, 40, 57—78.