Search Results - "NAIR, T. S"
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1
Cubic and orthorhombic SnS thin-film absorbers for tin sulfide solar cells
Published in Physica status solidi. A, Applications and materials science (01-01-2016)“…The tin sulfide solar cell has acquired prominence in recent years. We present the characteristics of two polymorphs of SnS and their perspectives in thin‐film…”
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2
Isoforms, Expression, Glycosylation, and Tissue Distribution of CTL2/SLC44A2
Published in The Protein Journal (01-08-2010)“…Antibodies to the solute carrier protein, CTL2/SLC44A2, cause hearing loss in animals, are frequently found in autoimmune hearing loss patients, and are…”
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3
Thin film solar cells of cubic structured SnS‐SnSe
Published in Physica status solidi. A, Applications and materials science (01-10-2017)“…Thin films of tin sulfide and tin selenide with a large simple cubic (CUB) crystalline structure with lattice constants of 11.5873 Å (SnS‐CUB) and 11.9632 Å…”
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4
Antibodies to HSP-70 in normal donors and autoimmune hearing loss patients
Published in The Laryngoscope (01-10-2003)“…Objective: To evaluate serum antibody to heat shock protein (HSP) 70 as a marker for autoimmune sensorineural hearing loss (AISNHL). Design: Sera from 20…”
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5
Challenges in Sensors Technology for Industry 4.0 for Futuristic Metrological Applications
Published in MĀPAN : journal of Metrology Society of India (01-06-2021)“…The current advances and innovations in sensor technologies attributed to Industry 4.0 serve as the backbone for the inclusive growth of industry and ramping…”
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6
Simple solar cells of 3.5% efficiency with antimony sulfide-selenide thin films
Published in Physica status solidi. PSS-RRL. Rapid research letters (01-05-2016)“…Thin films of antimony sulfide‐selenide solid solutions (Sb2Sx Se3–x) were prepared by chemical bath deposition and thermal evaporation to constitute solar…”
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7
Non-fumigant management of apple replant disease
Published in Scientia horticulturae (01-11-2004)“…Field and greenhouse trials examining the response of young apple trees to amendment of apple replant disease (ARD) soils using monoammonium phosphate (MAP),…”
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8
Heterojunction CdS/Sb2S3 solar cells using antimony sulfide thin films prepared by thermal evaporation
Published in Thin solid films (31-10-2014)“…Thin film solar cells of CdS/Sb2S3/C-Ag are developed on glass substrates coated with SnO2:F (FTO) by thermal evaporation of Sb2S3 powder. At a thickness of…”
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Thin film solar cell of SnS absorber with cubic crystalline structure
Published in Physica status solidi. A, Applications and materials science (01-10-2015)“…In a solar cell: stainless steel/SnS/CdS/ZnO/ZnO:Al, we report conversion efficiency of 1.28%, open‐circuit voltage (Voc) of 0.470 V, and short‐circuit current…”
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10
Evolution of crystalline structure in SnS thin films prepared by chemical deposition
Published in Solid state sciences (01-04-2014)“…Crystal structure and morphology undergo significant evolution in thin films of tin(II) sulfide prepared by chemical deposition, over a narrow interval of bath…”
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11
Cubic-structured tin selenide thin film as a novel solar cell absorber
Published in Physica status solidi. A, Applications and materials science (01-08-2016)“…Tin selenide thin film with a simple cubic crystalline structure (SnSe‐CUB) of unit cell dimension a = 11.9632 Å is obtained via chemical deposition on a tin…”
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12
Chemically deposited lead sulfide and bismuth sulfide thin films and Bi2S3/PbS solar cells
Published in Thin solid films (31-01-2011)“…Solar cells with a short-circuit current density (J sc ) of 6mA/cm2, an open circuit voltage (V oc ) of 280mV and a conversion efficiency of 0.5% under a…”
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13
Antimony sulfide thin films in chemically deposited thin film photovoltaic cells
Published in Thin solid films (31-05-2007)“…Antimony sulfide thin films of thickness ≈ 500 nm have been deposited on glass slides from chemical baths constituted with SbCl 3 and sodium thiosulfate…”
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Journal Article Conference Proceeding -
14
Structural and chemical transformations in SnS thin films used in chemically deposited photovoltaic cells
Published in Thin solid films (31-05-2007)“…Chemically deposited SnS thin films possess p-type electrical conductivity. We report a photovoltaic structure: SnO 2:F–CdS–SnS–(CuS)–silver print, with V oc >…”
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Journal Article Conference Proceeding -
15
Cochlin isoforms and their interaction with CTL2 (SLC44A2) in the inner ear
Published in Journal of the Association for Research in Otolaryngology (01-12-2007)“…Choline transporter-like protein 2 (CTL2) is a multi-transmembrane protein expressed on inner ear supporting cells that was discovered as a target of…”
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16
All-chemically deposited Bi2S3/PbS solar cells
Published in Thin solid films (31-08-2011)“…We report on solar cells with a cross-sectional layout: TCO/window/Bi2S3/PbS, in which a commercial SnO2 transparent conductive oxide (TCO-PPG Sungate 500);…”
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Conference Proceeding Journal Article -
17
Chemically deposited thin films of PbSe as an absorber component in solar cell structures
Published in Thin solid films (31-08-2011)“…PbSe thin films were prepared by chemical deposition using dimethylselenourea as a source of selenide ions. Depending on the duration (30 min to 4 h) and…”
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Journal Article Conference Proceeding -
18
Polycrystalline thin films of antimony selenide via chemical bath deposition and post deposition treatments
Published in Thin solid films (22-12-2005)“…We report a method for obtaining thin films of polycrystalline antimony selenide via chemical bath deposition followed by heating the thin films at 573 K in…”
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19
Monoclonal antibody induced hearing loss
Published in Hearing research (01-03-1995)“…Monoclonal antibodies KHRI-3 and KHRI-5 identify antigens expressed on inner ear supporting cells and auditory hair cells respectively. To determine if these…”
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20
KHRI-3 monoclonal antibody-induced damage to the inner ear: antibody staining of nascent scars
Published in Hearing research (01-03-1999)“…Intracochlear infusion of the KHRI-3 monoclonal antibody results in in vivo binding to guinea pig inner ear supporting cells, loss of hair cells and hearing…”
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