![]() ![]() Increase in sale of compact car segment is comparatively large when compared to other segments. Based on the length SIAM has classified the passenger cars into six categories and all segments have been showing increase in sales. The sale of the passenger car increased to 1,48,681 units in December 2010 from 1,15,337 units in the same month in 2009i. ![]() Authors viewed that the change in economic vibrancy due to the change in Government policy after 1991, increase in purchasing power, changes in lifestyle and availability of car finance had encouraged the change and growth of Indian car market. ![]() The TG/DTA traces of the nanopowder show four major stages of weight loss.Indian car market has undergone drastic change during last one decade in terms of volume of sales and variety of options available to the consumers.This paper examines the growth of the Indian passenger car market in relation to the factors facilitated the growth and analyses the sales trends in the recent past. The TEM micrographs indicate that the CdS nanorods exhibit well defined morphology and high crystalline quality with narrow size distribution of lengths and widths. ![]() From SEM and EDX analysis, the morphology of the aggregates and the composition of the obtained product are identified. The PL emission peak is detected around 550 nm. The absorption band edge is seen shifted to 505 nm than the bulk material and the corresponding band gap is found to be 2.45 eV. The UV-vis absorption spectrum indicates the narrow size distribution of the CdS nanorods. The sample was systematically characterized by UV-vis absorption, photoluminescence (PL) spectrum, scanning electron microscopy (SEM), transmission electron microscopy (TEM) and thermal analysis. X-ray diffraction result confirms that the nanorods are of hexagonal structure and the selected area electron diffraction (SAED) identifies the single crystalline nature of the sample. Cadmium sulfide (CdS) one dimensional (1D) nanocrystals were prepared using a polyethylene glycol (PEG) assisted hydrothermal synthesis. ![]()
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