Chikkam Srinivasa Rao
Indian Institute of Chemical Technology
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Featured researches published by Chikkam Srinivasa Rao.
Energy and Environmental Science | 2009
Lingamallu Giribabu; Challuri Vijay Kumar; Chikkam Srinivasa Rao; Veeranagari Gopal Reddy; Paidi Yella Reddy; Malapaka Chandrasekharam; Yarasi Soujanya
Two efficient heteroleptic ruthenium (II) complexes, cis-di(thiocyanato)(4,4′-dicarboxylic acid-2,2′-bipyridine)(4,4′-bis(2-(3,5-di tert-butylphenyl)ethenyl)-2,2′-bipyridine) ruthenium (II) (HRD-1) and cis-di(thiocyanato)(4,4′-dicarboxylic acid-2,2′-bipyridine)(4,4′-bis(2-(2,3,5-trimethylphenyl)ethenyl)-2,2′-bipyridine) ruthenium (II) (HRD-2) were synthesized and characterized, which when anchored onto nanocrystalline TiO2 shows efficiency of 5.77 and 4.87% respectively, using durable redox electrolytes.
Advances in Optoelectronics | 2011
Malapaka Chandrasekharam; Ganugula Rajkumar; Chikkam Srinivasa Rao; Thogiti Suresh; Yarasi Soujanya; Paidi Yella Reddy
Two new ruthenium(II) mixed ligand terpyridine complexes, “Ru(Htcterpy)(NCS)(L1) (N(C4H9)4), mLBD1” and Ru(Htcterpy)(NCS)(L2)(N(C4H9)4), mLBD2 were synthesized and fully characterized by UV-Vis, emission, cyclic voltammogram, and other spectroscopic means, and the structures of the compounds are confirmed by 1H-NMR, ESI-MASS, and FT-IR spectroscopes. The influence of the substitution of L1 and L2 on solar-to-electrical energy conversion efficiency (η) of dye-sensitized solar cells (DSSCs) was evaluated relative to reference black dye. The dyes showed molar extinction coefficients of 17600 M−1 cm−1 for mLBD1 and 21300 M−1 cm−1 for mLBD2 both at λ maximum of 512 nm, while black dye has shown 8660 M−1 cm−1 at λ maximum of 615 nm. The monochromatic incident photon-to-collected electron conversion efficiencies of 60.71% and 75.89% were obtained for mLBD1 and mLBD2 dyes, respectively. The energy conversion efficiencies of mLBD1 and mLBD2 dyes are 3.15% (𝐽SC=11.86 mA/cm2, 𝑉OC=613 mV, ff=0.4337) and 3.36% (𝐽SC=12.71 mA/cm2, 𝑉OC=655 mV, ff=0.4042), respectively, measured at the AM1.5G conditions, the reference black dye-sensitized solar cell, fabricated and evaluated under identical conditions exhibited η-value of 2.69% (𝐽SC=10.95 mA/cm2, 𝑉OC=655 mV, ff=0.3750).
Advances in Optoelectronics | 2011
Malapaka Chandrasekharam; Ganugula Rajkumar; Thogoti Suresh; Chikkam Srinivasa Rao; Paidi Yella Reddy; Jun-Ho Yum; Mohammad Khaja Nazeeruddin; Michael Graetzel
A new high molar extinction coefficient ruthenium(II) bipyridyl complex “cis-Ru(4,4-bis(9,9-dibutyl-7-(3,6-di-tert-butyl-9H-carbazol-9-yl)-9H-fluoren-2-yl)-2,2-bipyridine)(2,2-bipyridine-4,4-dicarboxylic acid)(NCS)2, BPFC” has been synthesized and characterized by FT-IR, 1H-NMR, and ESI-MASS spectroscopes. The sensitizer showed molar extinction coefficient of 18.5×103 M−1cm−1, larger as compared to the reference N719, which showed 14.4×103 M−1cm−1. The test cells fabricated using BPFC sensitizer employing high performance volatile electrolyte, (E01) containing 0.05 M I2, 0.1 M LiI, 0.6 M 1,2-dimethyl-3-n-propylimidazolium iodide, 0.5 M 4-tert-butylpyridine in acetonitrile solvent, exhibited solar-to-electric energy conversion efficiency (η) of 4.65% (short-circuit current density (𝐽SC) = 11.52 mA/cm2, open-circuit voltage (𝑉OC) = 566 mV, fill factor = 0.72) under Air Mass 1.5 sunlight, lower as compared to the reference N719 sensitized solar cell, fabricated under similar conditions, which exhibited η-value of 6.5% (𝐽SC = 14.3 mA/cm2, 𝑉OC = 640 mV, fill factor = 0.71). UV-Vis measurements conducted on TiO2 films showed decreased film absorption ratios for BPFC as compared to those of reference N719. Staining TiO2 electrodes immediately after sonication of dye solutions enhanced film absorption ratios of BPFC relative to those of N719. Time-dependent density functional theory (TD-DFT) calculations show higher oscillation strengths for 4,4-bis(9,9-dibutyl-7-(3,6-di-tert-butyl-9H-carbazol-9-yl)-9H-fluoren-2-yl)-2,2-bipyridine relative to 2,2-bipyridine-4,4-dicarboxylic acid and increased spectral response for the corresponding BPFC complex.
Synthetic Metals | 2011
Malapaka Chandrasekharam; Ganugula Rajkumar; Chikkam Srinivasa Rao; Thogiti Suresh; Paidi Yella Reddy
Synthetic Metals | 2011
Malapaka Chandrasekharam; Ganugula Rajkumar; Chikkam Srinivasa Rao; Thogiti Suresh; Marri Anil Reddy; Paidi Yella Reddy; Yarasi Soujanya; B. Takeru; Yum Jun-Ho; Mahammad Khaja Nazeeruddin; Michael Graetzel
Advances in Natural Sciences: Nanoscience and Nanotechnology | 2011
Malapaka Chandrasekharam; Ganugula Rajkumar; Chikkam Srinivasa Rao; Thogiti Suresh; Paidi Yella Reddy; Jun-Ho Yum; Mahammad Khaja Nazeeruddin; Michael Graetzel
Archive | 2009
Paidei Iera Redei; Veeranagari Gopal Reddy; Chikkam Srinivasa Rao
Archive | 2012
Paidei Iera Reddy; Veeranagari Gopal Reddy; Challuri Vijaykumar; Rajkumar Ganugula; Lingamallu Giribabu; Mannepalli Lakshmi Kantam; Chikkam Srinivasa Rao; Malapaka Chandrasekharam
The Lancet | 2011
Malapaka Chandrasekharam; Ganugula Rajkumar; Chikkam Srinivasa Rao; Thogiti Suresh; Marri Anil Reddy; Paidi Yella Reddy; Yarasi Soujanya; B. Takeru; Yum Jun-Ho; Mahammad Khaja Nazeeruddin; Michael Graetzel
The Lancet | 2011
Malapaka Chandrasekharam; Ganugula Rajkumar; Chikkam Srinivasa Rao; Thogiti Suresh; Paidi Yella Reddy