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Dive into the research topics where Ramakrishnan Amutha is active.

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Featured researches published by Ramakrishnan Amutha.


ACS Applied Materials & Interfaces | 2010

Reagents for ZnS Hierarchical and Non-Hierarchical Porous Self-Assembly

Manickavachagam Muruganandham; Ramakrishnan Amutha; Mika Sillanpää

Monodispersed highly ordered and homogeneous ZnS microsphere with precisely controlled hierarchical and non-hierarchical surface structure was successfully fabricated in water-ethanol mixed solvent and in water without using any catalysts or templates in a hydrothermal process. The microsphere formation has been facilitated by self-assembly followed by Ostwald ripening process. The products were characterized by field-emission scanning electron microscopy (FE-SEM), transmission electron microscopy (TEM), X-ray diffraction (XRD) and energy-dispersive X-ray spectrometry (EDX). The XRD results indicated that the cubic phase ZnS formed in hydrothermal process at various reaction times. Introducing ethanol as a co-solvent with water facilitated hierarchical porous surface structure. The influences of various zinc and sulfur precursors, various alcohols as co-solvent, and solvent ratio on the formation of specific surface structured microsphere was investigated. The water-ethanol (1:1) solvent ratio is the minimum required to facilitate hierarchical porous surface structure. The by-products formed during the hydrothermal process are induced specific surface structure in ZnS microsphere. This is the first report on in situ generated by-products being used as a reagent to facilitate surface structured material fabrication. The formed by-products could be used as recyclable reagents to fabricate hierarchical porous ZnS in three consecutive cycles. A plausible growth mechanism of by-product-induced surface structure in different solvent was discussed. The research results may lay down new vistas for the in situ generated by-product-assisted specific surface structured ZnS fabrication.


Journal of Physical Chemistry C | 2012

Facile Fabrication of Tunable Bi2O3 Self-Assembly and Its Visible Light Photocatalytic Activity

Manickavachagam Muruganandham; Ramakrishnan Amutha; Gang-Juan Lee; Shu-Han Hsieh; Jerry J. Wu; Mika Sillanpää


Journal of Physical Chemistry C | 2012

Controlled Fabrication of α-GaOOH and α-Ga2O3 Self-Assembly and Its Superior Photocatalytic Activity

Manickavachagam Muruganandham; Ramakrishnan Amutha; Mahmoud S.M. Abdel Wahed; Bashir Ahmmad; Yasushige Kuroda; Rominder P.S. Suri; Jerry J. Wu; Mika Sillanpää


Journal of Physical Chemistry C | 2011

Facile Fabrication of Hierarchical α-Fe2O3: Self-Assembly and Its Magnetic and Electrochemical Properties

Manickavachagam Muruganandham; Ramakrishnan Amutha; Marappan Sathish; Tony Sarvinder Singh; Rominder P.S. Suri; Mika Sillanpää


Journal of Physical Chemistry C | 2010

Self-Assembled Fabrication of Superparamagnetic Highly Stable Mesoporous Amorphous Iron Oxides

Manickavachagam Muruganandham; Ramakrishnan Amutha; Bashir Ahmmad; Eveliina Repo; Mika Sillanpää


Journal of Physical Chemistry C | 2011

Crystallization-Induced Top-Down Wormlike Hierarchical Porous α-Fe2O3 Self-Assembly

Ramakrishnan Amutha; Manickavachagam Muruganandham; Marappan Sathish; Sambandam Akilandeswari; Rominder P.S. Suri; Eveliina Repo; Mika Sillanpää


Journal of Nanoscience and Nanotechnology | 2011

Facile microwave-combustion synthesis of wurtzite CdS nanoparticles.

Ramakrishnan Amutha; M. Muruganandham; Gang-Juan Lee; Jyh-Ming Wu


Journal of Nanoscience and Nanotechnology | 2010

Template-free synthesis of beta-In2S3 superstructures and their photocatalytic activity.

Ramakrishnan Amutha; S. Akilandeswari; Bashir Ahmmad; M. Muruganandham; Mika Sillanpää


Advanced Science Letters | 2010

Flux Assisted Shape Tunable Synthesis of Zinc Oxide Microflowers

Ramakrishnan Amutha; M. Muruganandham; G. J. Lee; V. N. Batalova; G. Mokrousov; J. J. Wu


Materials Letters | 2013

Low temperature synthesis of single crystal ZnO microflower composed of hexagonal nanorods

Ramakrishnan Amutha; Gang-Juan Lee; Eveliina Repo; Mika Sillanpää; Jerry J. Wu

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Mika Sillanpää

Lappeenranta University of Technology

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M. Muruganandham

Lappeenranta University of Technology

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Eveliina Repo

Lappeenranta University of Technology

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