【摘 要】
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The adsorption and self–assembly of organic molecules at surfaces has recently been investigated extensively, both because of the fundamental interest and
【机 构】
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INRS Center for Energy, Materials and Telecommunications
【出 处】
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The 6th International Conference on Nanoscience and Technolo
论文部分内容阅读
The adsorption and self–assembly of organic molecules at surfaces has recently been investigated extensively, both because of the fundamental interest and for prospective applications in nanoelectronics [1,2]. Molecule–molecule and molecule–substrate interactions can be tuned by appropriate choice of substrate material and symmetry. Upon molecular adsorption, surfaces typically do not behave as static templates, but often rearrange to accommodate different molecular species [3,4]. We review recent experiments using Scanning Tunnelling Microscopy, providing new insight into fundamental properties such as molecular diffusion [5,6] and self–assembly via surface templating [7,8] and H-bonding driven by co-adsorption [9-11]. Our approach is to modify surfaces providing suitable surface cues,that may guide the assembly of adsorbates [12-14]. Recent advances in using the substrate as catalyst for surface confined polymerization reactions will also be discussed [15-24].
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