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Self-Assembly of PFS Block Copolymers in the Solid State

5 Self-Assembly of PFS Block Copolymers in the Solid State [Pg.513]

Polyferrocenylsilane block copolymers also phase separate in the solid state to generate periodic, nanoscopic iron-rich domains that can be observed by TEM without resorting to [Pg.513]

The iron-rich ceramics from films PS-6-PFS function as catalysts for the growth of single-walled carbon nanotubes (SWCNT). Typically, thin films were self-assembled and treated with UV-ozone to remove organic materials and subsequently used for the simple one-step chemical vapor deposition (CVD) growth of SWCNTs. The resulting SWCNTs were characterized by [Pg.514]

Raman Spectrum of Benzenethiol (symmetric ring stretch) on Nanotextured Ag Surface and on Smooth Ag Film [Pg.520]

To date, block copolymer self-assembly for nanolithographic applications has mainly focused on diblock copolymers, however, triblock terpolymers offer a wider range of geometries than the simple line and dot morphologies available to diblock copolymers. [Pg.521]




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Block copolymers self-assembly

Block copolymers, self-assembled

Copolymer in block

Copolymers solid state self-assembly

Copolymers, self-assembling

In assembly

In copolymers

PF Copolymers

Self block copolymers

Self-assemblies of block copolymers

Solid blocks

Solids blocking

States in Solids

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