-
22
-
-
35948932620
-
-
A. P. Wiita R. Perez-Jimenez K. A. Walther F. Grater B. J. Berne A. Holmgren J. M. Sanchez-Ruiz J. M. Fernandez Nature 2007 450 124 127
-
(2007)
Nature
, vol.450
, pp. 124-127
-
-
Wiita, A.P.1
Perez-Jimenez, R.2
Walther, K.A.3
Grater, F.4
Berne, B.J.5
Holmgren, A.6
Sanchez-Ruiz, J.M.7
Fernandez, J.M.8
-
31
-
-
36148971647
-
-
W. Shi M. I. Giannotti X. Zhang M. A. Hempenius H. Schönherr G. J. Vancso Angew. Chem., Int. Ed. 2007 46 8400 8404
-
(2007)
Angew. Chem., Int. Ed.
, vol.46
, pp. 8400-8404
-
-
Shi, W.1
Giannotti, M.I.2
Zhang, X.3
Hempenius, M.A.4
Schönherr, H.5
Vancso, G.J.6
-
32
-
-
0018101150
-
-
G. I. Bell Science 1978 200 618 627
-
(1978)
Science
, vol.200
, pp. 618-627
-
-
Bell, G.I.1
-
35
-
-
21244479084
-
-
R. Eckel S. D. Wilking A. Becker N. Sewald R. Ros D. Anselmetti Angew. Chem., Int. Ed. 2005 44 3921 3924
-
(2005)
Angew. Chem., Int. Ed.
, vol.44
, pp. 3921-3924
-
-
Eckel, R.1
Wilking, S.D.2
Becker, A.3
Sewald, N.4
Ros, R.5
Anselmetti, D.6
-
36
-
-
62749092580
-
-
K. Wollschläger K. Gaus A. Körnig R. Eckel S. D. Wilking M. McIntosh Z. Majer A. Becker R. Ros D. Anselmetti N. Sewald Small 2009 5 484 495
-
(2009)
Small
, vol.5
, pp. 484-495
-
-
Wollschläger, K.1
Gaus, K.2
Körnig, A.3
Eckel, R.4
Wilking, S.D.5
McIntosh, M.6
Majer, Z.7
Becker, A.8
Ros, R.9
Anselmetti, D.10
Sewald, N.11
-
43
-
-
0002691345
-
-
F. Kienberger G. Kada H. J. Gruber V. P. Pastushenko C. Riener M. Trieb H. G. Knaus H. Schindler P. Hinterdorfer Single Mol. 2000 1 59 65
-
(2000)
Single Mol.
, vol.1
, pp. 59-65
-
-
Kienberger, F.1
Kada, G.2
Gruber, H.J.3
Pastushenko, V.P.4
Riener, C.5
Trieb, M.6
Knaus, H.G.7
Schindler, H.8
Hinterdorfer, P.9
-
45
-
-
33845660819
-
-
C. Schäfer B. Decker M. Letzel F. Novara R. Eckel R. Ros D. Anselmetti J. Mattay Pure Appl. Chem. 2006 78 2247 2259
-
(2006)
Pure Appl. Chem.
, vol.78
, pp. 2247-2259
-
-
Schäfer, C.1
Decker, B.2
Letzel, M.3
Novara, F.4
Eckel, R.5
Ros, R.6
Anselmetti, D.7
Mattay, J.8
-
46
-
-
40449132572
-
-
D. Anselmetti F. W. Bartels A. Becker B. Decker R. Eckel M. McIntosh J. Mattay P. Plattner R. Ros C. Schäfer N. Sewald Langmuir 2008 24 1365 1370
-
(2008)
Langmuir
, vol.24
, pp. 1365-1370
-
-
Anselmetti, D.1
Bartels, F.W.2
Becker, A.3
Decker, B.4
Eckel, R.5
McIntosh, M.6
Mattay, J.7
Plattner, P.8
Ros, R.9
Schäfer, C.10
Sewald, N.11
-
50
-
-
64449085129
-
-
M. Janke Y. Rudzevich O. Molokanova T. Metzroth I. Mey G. Diezemann P. E. Marszalek J. Gauss V. Bohmer A. Janshoff Nat. Nanotechnol. 2009 4 225 229
-
(2009)
Nat. Nanotechnol.
, vol.4
, pp. 225-229
-
-
Janke, M.1
Rudzevich, Y.2
Molokanova, O.3
Metzroth, T.4
Mey, I.5
Diezemann, G.6
Marszalek, P.E.7
Gauss, J.8
Bohmer, V.9
Janshoff, A.10
-
69
-
-
52449129019
-
-
G. Gattuso A. Notti A. Pappalardo M. F. Parisi I. Pisagatti S. Pappalardo D. Garozzo A. Messina Y. Cohen S. Slovak J. Org. Chem. 2008 73 7280 7289
-
(2008)
J. Org. Chem.
, vol.73
, pp. 7280-7289
-
-
Gattuso, G.1
Notti, A.2
Pappalardo, A.3
Parisi, M.F.4
Pisagatti, I.5
Pappalardo, S.6
Garozzo, D.7
Messina, A.8
Cohen, Y.9
Slovak, S.10
-
90
-
-
34047151952
-
-
Approximately one cavitand per area of 6 nm × 6 nm can be deduced as a crude estimate of the surface concentration of the tetra(pyridyl)cavitand in a mixed SAM with decyl sulfide (1100), see ref. 38 and 39. Although several tetra(pyridyl)cavitands are theoretically accessible to the cantilever-bound tetra(carboxyl)cavitands, good results were obtained in force spectroscopy experiments using these conditions
-
Y. Gilbert M. Deghorain L. Wang B. Xu P. D. Pollheimer H. J. Gruber J. Errington B. Hallet X. Haulot C. Verbelen P. Hols Y. F. Dufrene Nano Lett. 2007 7 796 801
-
(2007)
Nano Lett.
, vol.7
, pp. 796-801
-
-
Gilbert, Y.1
Deghorain, M.2
Wang, L.3
Xu, B.4
Pollheimer, P.D.5
Gruber, H.J.6
Errington, J.7
Hallet, B.8
Haulot, X.9
Verbelen, C.10
Hols, P.11
Dufrene, Y.F.12
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