Investigation of electron-induced cross-linking of self-assembled monolayers by scanning tunneling microscopy

Author:

Stohmann Patrick,Koch Sascha,Yang YangORCID,Kaiser Christopher David,Ehrens Julian,Schnack JürgenORCID,Biere Niklas,Anselmetti DarioORCID,Gölzhäuser Armin,Zhang XianghuiORCID

Abstract

Ultrathin membranes with subnanometer pores enabling molecular size-selective separation were generated on surfaces via electron-induced cross-linking of self-assembled monolayers (SAMs). The evolution of p-terphenylthiol (TPT) SAMs on Au(111) surfaces into cross-linked monolayers was observed with a scanning tunneling microscope. As the irradiation dose was increased, the cross-linked regions continued to grow and a large number of subnanometer voids appeared. Their equivalent diameter is 0.5 ± 0.2 nm and the areal density is ≈1.7 × 1017 m−2. Supported by classical molecular dynamics simulations, we propose that these voids may correspond to free volumes inside a cross-linked monolayer.

Publisher

Beilstein Institut

Subject

Electrical and Electronic Engineering,General Physics and Astronomy,General Materials Science

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