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Institution

Government of India

GovernmentNew Delhi, India
About: Government of India is a government organization based out in New Delhi, India. It is known for research contribution in the topics: Population & Government. The organization has 2945 authors who have published 2999 publications receiving 44942 citations. The organization is also known as: Union Government & Central Government.


Papers
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Journal ArticleDOI
26 Jul 2006-Vaccine
TL;DR: The 116E strain is attenuated, clinically safe and highly immunogenic with a single dose of rotavirus vaccine candidates 116E and I321 and there were no significant differences in the number of adverse events.

68 citations

Journal ArticleDOI
TL;DR: In this paper, an in situ generation of CdS from highly reactive organometallic cadmium precursor (DMCd) in N, N ′-dimethyl formamide (DMF) was used for the first time with polyaniline for nano particles.

68 citations

Journal ArticleDOI
TL;DR: It was shown that the modified Gustafson method of age estimation from teeth resulted in more accurate and reproducible age estimations than did the original method.

68 citations

Journal ArticleDOI
TL;DR: In this article, a template-free, low temperature, facile single step solvothermal approach is used to construct a cubic single crystalline CeO2 nanoparticles grown on the edges of tapered ZnO nanorods with definite orientations and alignments.
Abstract: The present investigation explores the controlled architecture of a CeO2–ZnO nanocomposite via a template-free, low temperature, facile single step solvothermal approach. This complex architecture depicts cubic single crystalline CeO2 nanoparticles (size ∼15 nm) grown on the edges of tapered ZnO nanorods with definite orientations and alignments. The formation of wurtzite ZnO, cubic CeO2 and the coexistence of Ce3+ and Ce4+ on the surface of the CeO2–ZnO nanocomposites are confirmed using various characterization tools. The finding of such unique nanostructures by a facile method is exemplified by a plausible growth mechanism. Surprisingly, the aqueous mediated ultrasonication reaction conferred the formation of crystalline ZnO nanotubes of diameter ∼50 nm. Spatially resolved cathodoluminescence spectra are obtained by linearly scanning an individual CeO2–ZnO nanorod along its length, which reveals the size-dependent surface effects. Interestingly, such hybrid CeO2–ZnO nanoarchitecture is observed to exhibit enhanced field emission properties, demonstrating better current stability as compared to other ZnO nanostructures. This is attributed mainly to strong surface interactions between the Ce-ionic species and the ZnO nanorods. Herein, a soft-chemical approach is used for the first time to architect a binary oxide nanostructure, which is otherwise accomplished using high temperature techniques, as reported elsewhere. Also, the present work not only gives insight into understanding the hierarchical growth behaviour of the CeO2–ZnO nanocomposite in a solution phase synthetic system, but also provides an efficient route to enhance the field emission performance of ZnO nanostructures, which could be extended to other potential applications, such as chemical sensors, optoelectronic devices and photocatalysts.

67 citations


Authors

Showing all 2961 results

NameH-indexPapersCitations
M. Santosh103134449846
Rakesh Kumar91195939017
Sankaran Subramanian7433224680
S. V. Subramanian7244417132
Amit Kumar65161819277
Arvind Subramanian6422020452
Rakesh Sharma6067314157
Anil Mishra5517810505
Kaushik Basu5432313030
Pulok K. Mukherjee5429610873
Maharaj K. Bhan5320711841
Kuldeep Singh5143111815
Rakesh Tuli471657497
Dipak Kumar Sahoo472347293
M. Rajeevan461649115
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Performance
Metrics
No. of papers from the Institution in previous years
YearPapers
20238
202220
2021369
2020321
2019245
2018218