Self-assembled diphenylalanine peptide microtubes covered by reduced graphene oxide/spiky nickel nanocomposite: An integrated nanobiomaterial for multifunctional applications

M. S. Ivanov, V. A. Khomchenko, M. Salimian, T. Nikitin, S. Kopyl, A. M. Buryakov, E. D. Mishina, F. Salehli, P. A.A.P. Marques, G. Goncalves, R. Fausto, J. A. Paixão, A. L. Kholkin

Research output: Contribution to journalArticleResearchpeer-review

4 Citations (Scopus)
Original languageEnglish
Pages (from-to)149-157
Number of pages9
JournalMaterials and Design
Volume142
DOIs
Publication statusPublished - 15 Mar 2018

Fingerprint

Nickel oxide
Graphite
Graphene
Peptides
Nanocomposites
Scanning probe microscopy
diphenylalanine
nickel monoxide
Energy harvesting
Nanostructures
Nickel
Stiffness
Nanoparticles
Fabrication
Electrodes
Oxides
Electrons

Keywords

  • Bio-nanocomposites
  • Diphenylalanine (FF) peptide microtubes
  • Energy harvesting
  • Local current
  • Mechanical properties
  • Nickel nanoparticles
  • Reduced graphene oxide
  • Scanning Probe Microscopy

ASJC Scopus subject areas

  • Materials Science(all)
  • Mechanics of Materials
  • Mechanical Engineering

WoS ResearchAreas Categories

  • Materials Science, Multidisciplinary

Cite this

Ivanov, M. S. ; Khomchenko, V. A. ; Salimian, M. ; Nikitin, T. ; Kopyl, S. ; Buryakov, A. M. ; Mishina, E. D. ; Salehli, F. ; Marques, P. A.A.P. ; Goncalves, G. ; Fausto, R. ; Paixão, J. A. ; Kholkin, A. L. / Self-assembled diphenylalanine peptide microtubes covered by reduced graphene oxide/spiky nickel nanocomposite: An integrated nanobiomaterial for multifunctional applications. In: Materials and Design. 2018 ; Vol. 142. pp. 149-157.
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title = "Self-assembled diphenylalanine peptide microtubes covered by reduced graphene oxide/spiky nickel nanocomposite: An integrated nanobiomaterial for multifunctional applications",
keywords = "Bio-nanocomposites, Diphenylalanine (FF) peptide microtubes, Energy harvesting, Local current, Mechanical properties, Nickel nanoparticles, Reduced graphene oxide, Scanning Probe Microscopy",
author = "Ivanov, {M. S.} and Khomchenko, {V. A.} and M. Salimian and T. Nikitin and S. Kopyl and Buryakov, {A. M.} and Mishina, {E. D.} and F. Salehli and Marques, {P. A.A.P.} and G. Goncalves and R. Fausto and Paix{\~a}o, {J. A.} and Kholkin, {A. L.}",
year = "2018",
month = "3",
day = "15",
doi = "10.1016/j.matdes.2018.01.018",
language = "English",
volume = "142",
pages = "149--157",
journal = "Materials and Design",
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Ivanov, MS, Khomchenko, VA, Salimian, M, Nikitin, T, Kopyl, S, Buryakov, AM, Mishina, ED, Salehli, F, Marques, PAAP, Goncalves, G, Fausto, R, Paixão, JA & Kholkin, AL 2018, 'Self-assembled diphenylalanine peptide microtubes covered by reduced graphene oxide/spiky nickel nanocomposite: An integrated nanobiomaterial for multifunctional applications' Materials and Design, vol. 142, pp. 149-157. https://doi.org/10.1016/j.matdes.2018.01.018

Self-assembled diphenylalanine peptide microtubes covered by reduced graphene oxide/spiky nickel nanocomposite: An integrated nanobiomaterial for multifunctional applications. / Ivanov, M. S.; Khomchenko, V. A.; Salimian, M.; Nikitin, T.; Kopyl, S.; Buryakov, A. M.; Mishina, E. D.; Salehli, F.; Marques, P. A.A.P.; Goncalves, G.; Fausto, R.; Paixão, J. A.; Kholkin, A. L.

In: Materials and Design, Vol. 142, 15.03.2018, p. 149-157.

Research output: Contribution to journalArticleResearchpeer-review

TY - JOUR

T1 - Self-assembled diphenylalanine peptide microtubes covered by reduced graphene oxide/spiky nickel nanocomposite: An integrated nanobiomaterial for multifunctional applications

AU - Ivanov, M. S.

AU - Khomchenko, V. A.

AU - Salimian, M.

AU - Nikitin, T.

AU - Kopyl, S.

AU - Buryakov, A. M.

AU - Mishina, E. D.

AU - Salehli, F.

AU - Marques, P. A.A.P.

AU - Goncalves, G.

AU - Fausto, R.

AU - Paixão, J. A.

AU - Kholkin, A. L.

PY - 2018/3/15

Y1 - 2018/3/15

KW - Bio-nanocomposites

KW - Diphenylalanine (FF) peptide microtubes

KW - Energy harvesting

KW - Local current

KW - Mechanical properties

KW - Nickel nanoparticles

KW - Reduced graphene oxide

KW - Scanning Probe Microscopy

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U2 - 10.1016/j.matdes.2018.01.018

DO - 10.1016/j.matdes.2018.01.018

M3 - Article

VL - 142

SP - 149

EP - 157

JO - Materials and Design

JF - Materials and Design

SN - 0264-1275

ER -