Hollow nanoparticle nanotubes with a nanoscale brick wall structure of clay mineral platelets

Robin Ras (Corresponding Author), Teemu Ruotsalainen, Katri Laurikainen, Markus Linder, Olli Ikkala

Research output: Contribution to journalArticleScientificpeer-review

15 Citations (Scopus)

Abstract

Long hollow inorganic nanoparticle nanotubes have been synthesized by templating of block copolymer electrospun fibers with clay mineral platelets followed by interlinking of the platelets using condensation reactions.
Original languageEnglish
Pages (from-to)1366-1368
JournalChemical Communications
Issue number13
DOIs
Publication statusPublished - 2007
MoE publication typeA1 Journal article-refereed

Fingerprint

Platelets
Brick
Clay minerals
Nanotubes
Nanoparticles
Condensation reactions
Block copolymers
Fibers

Cite this

Ras, Robin ; Ruotsalainen, Teemu ; Laurikainen, Katri ; Linder, Markus ; Ikkala, Olli. / Hollow nanoparticle nanotubes with a nanoscale brick wall structure of clay mineral platelets. In: Chemical Communications. 2007 ; No. 13. pp. 1366-1368.
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Hollow nanoparticle nanotubes with a nanoscale brick wall structure of clay mineral platelets. / Ras, Robin (Corresponding Author); Ruotsalainen, Teemu; Laurikainen, Katri; Linder, Markus; Ikkala, Olli.

In: Chemical Communications, No. 13, 2007, p. 1366-1368.

Research output: Contribution to journalArticleScientificpeer-review

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T1 - Hollow nanoparticle nanotubes with a nanoscale brick wall structure of clay mineral platelets

AU - Ras, Robin

AU - Ruotsalainen, Teemu

AU - Laurikainen, Katri

AU - Linder, Markus

AU - Ikkala, Olli

PY - 2007

Y1 - 2007

N2 - Long hollow inorganic nanoparticle nanotubes have been synthesized by templating of block copolymer electrospun fibers with clay mineral platelets followed by interlinking of the platelets using condensation reactions.

AB - Long hollow inorganic nanoparticle nanotubes have been synthesized by templating of block copolymer electrospun fibers with clay mineral platelets followed by interlinking of the platelets using condensation reactions.

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DO - 10.1039/B616548F

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JO - Chemical Communications

JF - Chemical Communications

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