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N-dodecanethiol

Iwakura and Okada 64) interpret the mechanism and kinetics of the fert-amine catalyzed reactions of isocyanates with n-butanethiol and n-dodecanethiol somewhat differently. They found that the catalyzed reaction was strictly first order with respect to the thiol, isocyanate, and... [Pg.437]

Sodium sulfide has been photooxidised using Zn and A1 complexes and the metal-free derivatives of tetrasulfophthalocyanine in oxygen-saturated alkaline solutions to give the sulfate. Irradiation of self-assembled n-dodecanethiol... [Pg.229]

The current through an aromatic 4,4-di(phenylene-ethynylene)-benzenethiolate bonded to an Au(lll) surface is larger than that through an aliphatic n-dodecanethiolate bonded to the same substrate (Fig. 1). [Pg.1527]

Dodecane nitrile. See Lauryl nitrile 1-Dodecanethiol n-Dodecanethiol. Seen-Dodecyl mercaptan... [Pg.1569]

Figure 2. SEM images of copper hydroxide nano-needle arrays before (a) and after (b) treatment with an ethanol solution of n-dodecanethiol for 1.5 h (the nano-needles were deposited at a eonstant eurrent density of 1.5 vaAJar in 2.0 mol/1 KOH solution for 3 C/cm ). Inset of (b) image of a water droplet on the film. Reproduced with permission from [24]. Copyright 2006 American Chemical Society. Figure 2. SEM images of copper hydroxide nano-needle arrays before (a) and after (b) treatment with an ethanol solution of n-dodecanethiol for 1.5 h (the nano-needles were deposited at a eonstant eurrent density of 1.5 vaAJar in 2.0 mol/1 KOH solution for 3 C/cm ). Inset of (b) image of a water droplet on the film. Reproduced with permission from [24]. Copyright 2006 American Chemical Society.
Fig. 1 A schematic of alkanethiol-based SAM structure depicted using a structural model of an n-dodecanethiolate SAM (C12-SAM) on a gold (111) substrate [1], The definition of film thickness and tilt angle ((/>). Fig. 1 A schematic of alkanethiol-based SAM structure depicted using a structural model of an n-dodecanethiolate SAM (C12-SAM) on a gold (111) substrate [1], The definition of film thickness and tilt angle ((/>).
Fig. 8 Schematic real-space model and normalized electron density profiles < p(z)>/pix> (where p is the bulk electron density of mercury) obtained from the fits of reflectivity data to a density-dependent model for n-octadecanethiol (bold line) and n-dodecanethiol (thin line). The upper and lower figures are aligned with each other. Vertical lines in the model mark the position of the three outermost surface layers of mercury, with the origin of z coinciding with the first mercury layer [89]. [Pg.6307]


See other pages where N-dodecanethiol is mentioned: [Pg.381]    [Pg.109]    [Pg.110]    [Pg.239]    [Pg.811]    [Pg.259]    [Pg.415]    [Pg.49]    [Pg.234]    [Pg.370]    [Pg.376]    [Pg.377]    [Pg.377]    [Pg.379]    [Pg.379]    [Pg.142]    [Pg.169]    [Pg.169]    [Pg.412]    [Pg.6306]    [Pg.68]    [Pg.233]    [Pg.329]    [Pg.9]    [Pg.35]    [Pg.297]    [Pg.33]   
See also in sourсe #XX -- [ Pg.239 ]




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Dodecanethiol

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