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Dive into the research topics where Jayakrishna Khatei is active.

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Featured researches published by Jayakrishna Khatei.


RSC Advances | 2014

Facile hydrothermal synthesis of carbon nanoparticles and possible application as white light phosphors and catalysts for the reduction of nitrophenol

Hari Krishna Sadhanala; Jayakrishna Khatei; Karuna Kar Nanda

We report a simple hydrothermal synthesis of highly reproducible carbon nanoparticles in a size range between 2 and 7 nm from a single precursor sucrose without either surface passivating agents or acids and bases. The carbon nanoparticles can be used as white light phosphors, especially for ultraviolet light emitting diodes and metal-free catalyst for the reduction of nitrophenol.


Journal of Physics D | 2015

Self-assembled ZnO nanoparticles on ZnO microsheet: ultrafast synthesis and tunable photoluminescence properties

Sanjaya Brahma; Jayakrishna Khatei; S Sunkara; Kuang Yao Lo; S. A. Shivashankar

We report on the tunable photoluminescence characteristics of porous ZnO microsheets fabricated within 1-5 min of microwave irradiation in the presence of a capping agent such as citric acid, and mixture of citric acid with polyvinylpyrrolidone (PVP). The UV emission intensity reduces to 60% and visible emission increases tenfold when the molar concentration of citric acid is doubled. Further diminution of the intensity of UV emission (25%) is observed when PVP is mixed with citric acid. The addition of nitrogen donor ligands to the parent precursor leads to a red shift in the visible luminescence. The deep level emission covers the entire visible spectrum and gives an impression of white light emission from these ZnO samples. The detailed luminescence mechanism of our ZnO samples is described with the help of a band diagram constructed by using the theoretical models that describe the formation energy of the defect energy levels within the energy band structure. Oxygen vacancies play the key role in the variation of the green luminescence in the ZnO microsheets. Our research findings provide an insight that it is possible to retain the microstructure and simultaneously introduce defects into ZnO. The growth of the ZnO microsheets may be due to the self assembly of the fine sheets formed during the initial stage of nucleation.


Journal of Physics D | 2013

Electron irradiation effects on TGA-capped CdTe quantum dots

S. Chethan Pai; M. P. Joshi; S. Raj Mohan; U.P. Deshpande; T. S. Dhami; Jayakrishna Khatei; K S Koteshwar Rao; Ganesh Sanjeev

8MeV electron irradiation effects on thioglycolic acid (TGA)-capped CdTe quantum dots (QD) are discussed in this study. CdTe QDs were characterized using x-ray diffraction (XRD), transmission electron microscope (TEM) and x-ray photoelectron spectroscopy (XPS). Steady-state and time-resolved emission spectroscopy and UV-visible absorption spectroscopy were performed before and after irradiation with 8MeV electrons. XRD and TEM confirm the growth of TGA-capped CdTe QDs. The photoemission wavelength, intensity and lifetimes were found to vary with electron dose. At lower doses, they were found to be increasing (red-shift of photoluminescence (PL) peak and intensity) while the intensity decreased at higher electron doses. The observed changes in PL property, XPS and XRD analysis suggest possible epitaxial growth of the CdS shell on the CdTe core. This work demonstrates electron beam induced formation of the CdS layer on the CdTe core, which is a key step towards growth of the water soluble CdTe/CdS core-shell structure for biomedical labelling applications.


Journal of Experimental Nanoscience | 2013

Electronic energy transfer between long-range resonance states of 3-mercaptopropionic acid capped CdTe quantum dots in aqueous media

Jayakrishna Khatei; Sangram Keshari Sahoo; K. S. R. Koteswara Rao

We demonstrate electronic energy transfer between resonance states of 2 and 2.8 nm CdTe quantum dots in aqueous media using steady-state photoluminescence spectroscopy without using any external linker molecule. With increasing concentration of larger dots, there is subsequent quenching of luminescence in smaller dots accompanied by the enhancement of luminescence in larger dots. Our experimental evidence suggests that there is long-range resonance energy transfer among electronic excitations, specifically from the electronically confined states of the smaller dots to the higher excited states of the larger dots.


Materials Chemistry and Physics | 2011

Hydrothermal synthesis of CdTe QDs: Their luminescence quenching in the presence of bio-molecules and observation of bistable memory effect in CdTe QD/PEDOT:PSS heterostructure

Jayakrishna Khatei; K. S. R. Koteswara Rao


Advanced Materials Letters | 2013

Effect of electron beam irradiation on photoluminescence properties of thioglycolic acid (TGA) capped CdTe nanoparticles

Chethan Pai S; M. P. Joshi; S. Raj Mohan; T. S. Dhami; Jayakrishna Khatei; K S Koteshwar Rao; L. M. Kukreja; Ganesh Sanjeev; Raja Ramanna


Journal of Non-crystalline Solids | 2011

Optical absorption and photoluminescence studies of Nd3+ doped alkali boro germanate glasses

Sunil Kumar; Jayakrishna Khatei; S. Kasthurirengan; K. S. R. Koteswara Rao; K. P. Ramesh


Physical Chemistry Chemical Physics | 2015

Exciton–phonon scattering and nonradiative relaxation of excited carriers in hydrothermally synthesized CdTe quantum dots

Amardeep M. Jagtap; Jayakrishna Khatei; K. S. R. Koteswara Rao


Journal of Alloys and Compounds | 2011

Solvothermal synthesis of Hg1−xCdxTe nanostructures—Their structural and optical properties

Jayakrishna Khatei; Naresh Babu Pendyala; Koteswara Ksr Rao


Resonance | 2013

Various quantum mechanical concepts for confinements in semiconductor nanocrystals

Jayakrishna Khatei; Karuna Kar Nanda

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K S Koteshwar Rao

Indian Institute of Science

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Karuna Kar Nanda

Indian Institute of Science

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M. P. Joshi

Raja Ramanna Centre for Advanced Technology

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S. Raj Mohan

Raja Ramanna Centre for Advanced Technology

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T. S. Dhami

Raja Ramanna Centre for Advanced Technology

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Amardeep M. Jagtap

Indian Institute of Science

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