Materials Map

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The Materials Map is an open tool for improving networking and interdisciplinary exchange within materials research. It enables cross-database search for cooperation and network partners and discovering of the research landscape.

The dashboard provides detailed information about the selected scientist, e.g. publications. The dashboard can be filtered and shows the relationship to co-authors in different diagrams. In addition, a link is provided to find contact information.

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The Materials Map is still under development. In its current state, it is only based on one single data source and, thus, incomplete and contains duplicates. We are working on incorporating new open data sources like ORCID to improve the quality and the timeliness of our data. We will update Materials Map as soon as possible and kindly ask for your patience.

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in Cooperation with on an Cooperation-Score of 37%

Topics

Publications (28/28 displayed)

  • 2024Toward Water-Resistant, Tunable Perovskite Absorbers Using Peptide Hydrogel Additivescitations
  • 2023Elucidating the mechanism of self healing in hydro gel lead halide perovskite composites for use in photovoltaic devicescitations
  • 2022Surface stability of ionic-liquid-passivated mixed-cation perovskite probed with in-situ photoelectron spectroscopy24citations
  • 2022High efficiency semitransparent perovskite solar cells containing 2D nanopore arrays deposited in a single step11citations
  • 2022High efficiency semitransparent perovskite solar cells containing 2D nanopore arrays deposited in a single step11citations
  • 2021Improving the Efficiency, Stability, and Adhesion of Perovskite Solar Cells Using Nanogel Additive Engineering5citations
  • 2021Inelastic background modelling applied to Hard X-ray Photoelectron Spectroscopy of deeply buried layers: a comparison of synchrotron and lab-based (9.25 keV) measurements50citations
  • 2021Controlling the Thermoelectric Properties of Nb-Doped TiO2 Ceramics through Engineering Defect Structures29citations
  • 2020Functionalization of MoO3[sbnd]NiMoO4 nanocomposite using organic template for energy storage application50citations
  • 2020Synthesis and analysis of ZnO-CoMoO4 incorporated organic compounds for efficient degradation of azo dye pollutants under dark ambient conditions8citations
  • 2020Functionalization of MoO 3 [sbnd]NiMoO 4 nanocomposite using organic template for energy storage application50citations
  • 2020Using soft polymer template engineering of mesoporous TiO2 scaffolds to increase perovskite grain size and solar cell efficiency34citations
  • 2020Evaluation of electrochemical properties for water splitting by NiO nano-cubes synthesized using Olea ferruginea Royle30citations
  • 2020Organic template-assisted green synthesis of CoMoO4 nanomaterials for the investigation of energy storage properties61citations
  • 2019Air-Stable Methylammonium Lead Iodide Perovskite Thin Films Fabricated via Aerosol-Assisted Chemical Vapor Deposition from a Pseudohalide Pb(SCN)2 Precursor15citations
  • 2019Interaction of a tripeptide with titania surfaces: RGD adsorption on rutile TiO2(110) and model dental implant surfaces8citations
  • 2019Preliminary study of hydroxyapatite particles air abrasive blasting on Mg-4Zn-0.3Ca surface1citations
  • 2019A molecular precursor route to quaternary chalcogenide CFTS (Cu2FeSnS4) powders as potential solar absorber materials36citations
  • 2018Optical and Electrical Studies of CdS Thin Films with thickness variation58citations
  • 2018Corrosion protection of carbon steel by tetraphosphonates of systematically different molecular size68citations
  • 2018Ambient-Air-Stable Inorganic Cs2SnI6 Double Perovskite Thin Films via Aerosol-Assisted Chemical Vapour Deposition101citations
  • 2017Reduced electrical performance of Zn enriched ZnTe nanoinclusion semiconductors thin films for buffer layer in solar cells15citations
  • 2014Multitechnique characterization of CPTi surfaces after electro discharge machining (EDM)9citations
  • 2012PEGylation of nanosubstrates (Titania) with multifunctional reagents: At the crossroads between nanoparticles and nanocomposites18citations
  • 2010Surface characterization of zirconia dental implants86citations
  • 2007Electronic properties of the interface between p-CuI and anatase-phase n-Ti O2 single crystal and nanoparticulate surfaces: A photoemission study41citations
  • 2005Resonant photoemission of transition metal perovskites1citations
  • 2002Electronic structure and reactivity of TM-doped La1-xSrxCoO3 (TM = Ni, Fe) catalysts2citations

Places of action

Chart of shared publication
Liu, Xuzhao
1 / 2 shared
Preobrajenski, Alexei B.
1 / 2 shared
Spencer, Ben F.
2 / 7 shared
Flavell, Tom
1 / 1 shared
Generalov, Alexander V.
1 / 2 shared
Aljuaid, Fahad A.
1 / 1 shared
Walton, Alex S.
1 / 5 shared
Saiani, Alberto
1 / 9 shared
Zhao, Dawei
2 / 4 shared
Flavell, Wendy R.
9 / 16 shared
Flavell, Thomas
1 / 1 shared
Walton, Alex
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Aljuaid, Fahad
1 / 1 shared
Spencer, Ben Felix
8 / 14 shared
Edmondson, Steve
1 / 7 shared
Mo, Hongbo
1 / 2 shared
Chen, Qian
4 / 10 shared
Hill, Patrick
2 / 3 shared
Wang, Xuelian
2 / 3 shared
Curry, Rj
1 / 12 shared
Altujjar, Amal
3 / 4 shared
Saunders, Brian R.
4 / 35 shared
Mokhtar, Muhamad Z.
2 / 2 shared
Hodson, Nigel W.
2 / 2 shared
Jacobs, Janet
3 / 5 shared
Curry, Richard. J.
1 / 1 shared
Alkhudhari, Osama M.
1 / 2 shared
Wang, Ran
1 / 2 shared
Mokhtar, Muhamad Zulhasif
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Mironov, Aleksandr
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Alkhudhari, Osama
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Neilson, Joseph
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Saunders, Jennifer M.
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Shard, G.
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Lazo, Ruben Ahumada
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Maschek, M.
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Eriksson, S. K.
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Cant, D. J. H.
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Wiell, T.
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Tougaard, S.
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Muryn, Christopher
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Lee, T. L.
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Guilmeau, Emmanuel
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Azough, Feridoon
1 / 46 shared
Kepaptsoglou, Demie
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Ramasse, Quentin M.
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Liu, Xiaodong
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Maji, Krishnendu
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Freer, Robert
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Gao, Zhaohe
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Ahmad, Khuram Shahzad
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Gupta, Ram K.
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Malik, Mohammad Azad
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Shaheen, Irum
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Zequine, Camila
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Jones, Rosemary
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Ahmed, Khurram Shazad
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Malik, Mohammad
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Hodson, Nigel
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Wu, Shanglin
1 / 1 shared
Alkaltham, Abdulaziz
1 / 1 shared
Watson, Trystan M.
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Lian, Qing
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Lu, Dongdong
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Zhu, Mingning
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Liu, Chen
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Foster, Andrew Bryan
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Smith, Benjamin
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Zahra, Taghazal
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Lewis, Dj
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Obrien, Paul
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Murphy, Matthew
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Hussain, Hadeel
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Silikas, Nikolaos
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Wagstaffe, Michael
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Taylor, Mark
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Seli, Hazman
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Chen, Xiaohui
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Alanazi, Abdulaziz
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Salhi, Abdelmajid
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Missous, Mohamed
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Alam, Firoz
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Ali, Junaid
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Haq, Anwar Ul
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Mahmoud, Waqar
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Zahid, Iqra
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Moschona, Argyri
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Mezei, Gellert
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Plesu, Nicoleta
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Demadis, Konstantinos
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Nasir, Muhammad Farooq
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Mahmood, Waqar
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Shah, Nazar Abbas
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Eliades, George
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Jabbari, Youssef S. Al
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Syres, Karen
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Zaki, Noha M.
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Leonardis, Piero De
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Tirelli, Nicola
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Zinelis, S.
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Chatwin, C.
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Shiryaev, S. V.
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Barilo, S. N.
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Seddon, E. A.
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Jones, S. A.
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Marr, P. G.
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Khan, N.
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Chart of publication period
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Co-Authors (by relevance)

  • Liu, Xuzhao
  • Preobrajenski, Alexei B.
  • Spencer, Ben F.
  • Flavell, Tom
  • Generalov, Alexander V.
  • Aljuaid, Fahad A.
  • Walton, Alex S.
  • Saiani, Alberto
  • Zhao, Dawei
  • Flavell, Wendy R.
  • Flavell, Thomas
  • Walton, Alex
  • Aljuaid, Fahad
  • Spencer, Ben Felix
  • Edmondson, Steve
  • Mo, Hongbo
  • Chen, Qian
  • Hill, Patrick
  • Wang, Xuelian
  • Curry, Rj
  • Altujjar, Amal
  • Saunders, Brian R.
  • Mokhtar, Muhamad Z.
  • Hodson, Nigel W.
  • Jacobs, Janet
  • Curry, Richard. J.
  • Alkhudhari, Osama M.
  • Wang, Ran
  • Mokhtar, Muhamad Zulhasif
  • Mironov, Aleksandr
  • Alkhudhari, Osama
  • Neilson, Joseph
  • Saunders, Jennifer M.
  • Shard, G.
  • Lazo, Ruben Ahumada
  • Maschek, M.
  • Eriksson, S. K.
  • Reed, B.
  • Cant, D. J. H.
  • Wiell, T.
  • Tougaard, S.
  • Muryn, Christopher
  • Lee, T. L.
  • Guilmeau, Emmanuel
  • Azough, Feridoon
  • Kepaptsoglou, Demie
  • Ramasse, Quentin M.
  • Liu, Xiaodong
  • Maji, Krishnendu
  • Freer, Robert
  • Gao, Zhaohe
  • Ahmad, Khuram Shahzad
  • Gupta, Ram K.
  • Malik, Mohammad Azad
  • Shaheen, Irum
  • Zequine, Camila
  • Jones, Rosemary
  • Ahmed, Khurram Shazad
  • Malik, Mohammad
  • Hodson, Nigel
  • Wu, Shanglin
  • Alkaltham, Abdulaziz
  • Watson, Trystan M.
  • Lian, Qing
  • Lu, Dongdong
  • Zhu, Mingning
  • Liu, Chen
  • Foster, Andrew Bryan
  • Smith, Benjamin
  • Zahra, Taghazal
  • Lewis, Dj
  • Obrien, Paul
  • Murphy, Matthew
  • Hussain, Hadeel
  • Silikas, Nikolaos
  • Wagstaffe, Michael
  • Taylor, Mark
  • Seli, Hazman
  • Chen, Xiaohui
  • Alanazi, Abdulaziz
  • Salhi, Abdelmajid
  • Missous, Mohamed
  • Alam, Firoz
  • Ali, Junaid
  • Haq, Anwar Ul
  • Mahmoud, Waqar
  • Zahid, Iqra
  • Moschona, Argyri
  • Mezei, Gellert
  • Plesu, Nicoleta
  • Demadis, Konstantinos
  • Nasir, Muhammad Farooq
  • Mahmood, Waqar
  • Shah, Nazar Abbas
  • Eliades, George
  • Zinelis, Spiros
  • Jabbari, Youssef S. Al
  • Syres, Karen
  • Zaki, Noha M.
  • Kotsokechagia, Tania
  • Leonardis, Piero De
  • Cellesi, Francesco
  • Tirelli, Nicola
  • Eliades, G.
  • Zinelis, S.
  • Syres, K.
  • Chatwin, C.
  • Grätzel, M.
  • Kirkham, P.
  • Patel, S.
  • Christian, P.
  • Warren, S.
  • Mallick, A. K.
  • Kumarasinghe, A. R.
  • Hengerer, R.
  • Tsoutsou, D.
  • Rayner, S.
  • Stockbauer, R. L.
  • Sprunger, P. T.
  • Kurtz, R. L.
  • Hollingworth, J.
  • Shiryaev, S. V.
  • Bychkov, G. L.
  • Barilo, S. N.
  • Seddon, E. A.
  • Jones, S. A.
  • Marr, P. G.
  • Dunwoody, P. M.
  • Grice, S. C.
  • Jewitt, D. E.
  • Khan, N.
OrganizationsLocationPeople

article

Functionalization of MoO3[sbnd]NiMoO4 nanocomposite using organic template for energy storage application

  • Ahmad, Khuram Shahzad
  • Gupta, Ram K.
  • Malik, Mohammad Azad
  • Shaheen, Irum
  • Zequine, Camila
  • Thomas, Andrew G.
Abstract

<p>Over the recent times, sustainable advances in the metal oxides nanomaterials to develop effective and efficient supercapacitor electrode is critically investigated. In this regard, we have tailored the surface chemistry and nano scaled morphology of MoO<sub>3</sub>[sbnd]NiMoO<sub>4</sub> nanocomposite via organic functional groups of E. cognata and scrutinized it as an electrode for supercapacitor. MoO<sub>3</sub>[sbnd]NiMoO<sub>4</sub> nanocomposite was synthesized by the sol gel synthesis route using bioactive compounds of E. cognata. The phase formation of nanocomposite was confirmed by X-ray diffraction and energy dispersive spectroscopy while the morphology was examined by field emission scanning electron microscopy. The organic functional groups were revealed by Fourier transform infrared spectroscopy and X-ray photoelectron spectroscopy. Moreover, Gas chromatography–mass Spectroscopy (GC–MS) affirmed the presences of organic compounds in the synthesized nanocomposite. The optical band gap energy of functionalized MoO<sub>3</sub>[sbnd]NiMoO<sub>4</sub> was 3.34 eV, demonstrated by Tauc plot. The organic framework derived MoO<sub>3</sub>[sbnd]NiMoO<sub>4</sub> revealed specific capacitance of 204 Fg<sup>−1</sup> and maximum energy density of 9.4 Wh kg<sup>−1</sup>, calculated by galvanostatic charge-discharge measurements. Consequently, the nano-scale and organic species of E. cognata were found to enhance the electrochemical behavior of MoO<sub>3</sub>[sbnd]NiMoO<sub>4</sub> electrode towards supercapacitor.</p>

Topics
  • nanocomposite
  • density
  • impedance spectroscopy
  • morphology
  • surface
  • compound
  • energy density
  • phase
  • scanning electron microscopy
  • x-ray diffraction
  • x-ray photoelectron spectroscopy
  • mass spectrometry
  • organic compound
  • functionalization
  • gas chromatography
  • Fourier transform infrared spectroscopy