Items where Author is "De Feyter, S."

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Number of items: 14.

Nellissen, A.-C. and Steeno, R. and Vandenwijngaerden, J.B.F. and De Feyter, S. and Mertens, S.F.L. and Van der Auweraer, M. (2022) The behavior of thiacarbocyanine dyes on the surface of few-layered hexagonal boron nitride. Dyes and Pigments, 208: 110790.

Cui, K. and Mali, K.S. and Wu, D. and Feng, X. and Müllen, K. and Walter, M. and De Feyter, S. and Mertens, S.F.L. (2020) Ambient Bistable Single Dipole Switching in a Molecular Monolayer. Angewandte Chemie - International Edition. ISSN 1433-7851

Li, Z. and Van Guyse, J.F.R. and R. de la Rosa, V. and Van Gorp, H. and Walke, P. and González, M.C.R. and Uji-i, H. and Hoogenboom, R. and De Feyter, S. and Mertens, S.F.L. (2019) One-Step Covalent Immobilization of β-Cyclodextrin on sp2 Carbon Surfaces for Selective Trace Amount Probing of Guests. Advanced Functional Materials, 29 (36): 1901488. ISSN 1616-301X

Phan, T.H. and Van Gorp, H. and Li, Z. and Trung Huynh, T.M. and Fujita, Y. and Verstraete, L. and Eyley, S. and Thielemans, W. and Uji-I, H. and Hirsch, B.E. and Mertens, S.F.L. and Greenwood, J. and Ivasenko, O. and De Feyter, S. (2019) Graphite and Graphene Fairy Circles : A Bottom-Up Approach for the Formation of Nanocorrals. ACS Nano, 13 (5). pp. 5559-5571. ISSN 1936-0851

Cui, K. and Mali, K.S. and Wu, D. and Feng, X. and Müllen, K. and Walter, M. and De Feyter, S. and Mertens, S.F.L. (2017) Reversible Anion-Driven Switching of an Organic 2D Crystal at a Solid–Liquid Interface. Small, 13 (46): 1702379. ISSN 1613-6810

Li, Z. and Van Gorp, H. and Walke, P. and Phan, T.H. and Fujita, Y. and Greenwood, J. and Ivasenko, O. and Tahara, K. and Tobe, Y. and Uji-I, H. and Mertens, S.F.L. and De Feyter, S. (2017) Area-selective passivation of sp2 carbon surfaces by supramolecular self-assembly. Nanoscale, 9 (16). pp. 5188-5193. ISSN 2040-3364

Huynh, T.M.T. and Phan, T.H. and Ivasenko, O. and Mertens, S.F.L. and De Feyter, S. (2017) Nanoconfined self-assembly on a grafted graphitic surface under electrochemical control. Nanoscale, 9 (1). pp. 362-368. ISSN 2040-3364

Mertens, S.F.L. and Hemmi, A. and Muff, S. and Groning, O. and De Feyter, S. and Osterwalder, J. and Greber, T. (2016) Switching stiction and adhesion of a liquid on a solid. Nature, 534 (7609). pp. 676-679. ISSN 0028-0836

Greenwood, J. and Phan, T.H. and Fujita, Y. and Li, Z. and Ivasenko, O. and Vanderlinden, W. and Van Gorp, H. and Frederickx, W. and Lu, G. and Tahara, K. and Tobe, Y. and Uji-I, H. and Mertens, S.F.L. and De Feyter, S. (2015) Covalent modification of graphene and graphite using diazonium chemistry : Tunable grafting and nanomanipulation. ACS Nano, 9 (5). pp. 5520-5535. ISSN 1936-0851

Cui, K. and Schlütter, F. and Ivasenko, O. and Kivala, M. and Schwab, M.G. and Lee, S.-L. and Mertens, S.F.L. and Tahara, K. and Tobe, Y. and Müllen, K. and Mali, K.S. and De Feyter, S. (2015) Multicomponent self-assembly with a shape-persistent n-heterotriangulene macrocycle on au(111). Chemistry - A European Journal, 21 (4). pp. 1652-1659. ISSN 0947-6539

Cui, K. and Ivasenko, O. and Mali, K.S. and Wu, D. and Feng, X. and Müllen, K. and De Feyter, S. and Mertens, S.F.L. (2014) Potential-driven molecular tiling of a charged polycyclic aromatic compound. Chemical Communications, 50 (72). pp. 10376-10378. ISSN 1359-7345

Cui, K. and Mali, K.S. and Ivasenko, O. and Wu, D. and Feng, X. and Walter, M. and Müllen, K. and De Feyter, S. and Mertens, S.F.L. (2014) Squeezing, then stacking : From breathing pores to three-dimensional ionic self-assembly under electrochemical control. Angewandte Chemie International Edition, 53 (47). pp. 12951-12954. ISSN 1433-7851

Waghray, D. and Cloet, A. and Van Hecke, K. and Mertens, S.F.L. and De Feyter, S. and Van Meervelt, L. and Van Der Auweraer, M. and Dehaen, W. (2013) Diazadithia[7]helicenes: Synthetic exploration, solid-state structure, and properties. Chemistry - A European Journal, 19 (36). pp. 12077-12085. ISSN 0947-6539

Cui, K. and De Feyter, S. and Mertens, S.F.L. (2012) Immersion transients reveal potential of zero charge of nanoparticle films. Electrochemistry Communications, 25 (1). pp. 128-131. ISSN 1388-2481

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