Journal of Biomaterials and Nanobiotechnology

Journal of Biomaterials and Nanobiotechnology

ISSN Print: 2158-7027
ISSN Online: 2158-7043
www.scirp.org/journal/jbnb
E-mail: jbnb@scirp.org
"Implications of Nanobiosensors in Agriculture"
written by Vineeta Rai, Sefali Acharya, Nrisingha Dey,
published by Journal of Biomaterials and Nanobiotechnology, Vol.3 No.2A, 2012
has been cited by the following article(s):
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[63] Advantage of Nanotechnology-Based Genome Editing System and Its Application in Crop Improvement
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[65] CURRENT SCENARIO AND FUTURE PERSPECTIVES OF NANOTECHNOLOGY IN SUSTAINABLE AGRICULTURE AND FOOD PRODUCTION
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[66] The Harsh Environment and Resilient Plants: An Overview
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[67] Nanofertilizers and Their Applications 10
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[68] Nanoparticles Induced Stress and Toxicity in Plants
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[69] Review on Agro-Based Nanotechnology through Plant-Derived Green Nanoparticles: Synthesis, Application and Challenges
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[70] Biosensor: Potential and Scope in Agriculture
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[71] A Unique Perspective in Precision of Nano-biotechnology for Sustainable Agricultural Fields
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[72] Recent Trends, Prospects, and Challenges of Nanobiosensors in Agriculture
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[73] Applications and Practices of Myconanoparticles in Food and Agriculture
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[80] A study on the significance of smart IoT sensors and Data science in Digital agriculture
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[81] Commercialization of Regulatory Forensic Programs
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[82] Nano-enabled Agriculture Can Sustain “Farm to Fork” Chain
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[83] Food Packaging Development: Recent Perspective
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[84] Nanosensors as Potential Multisensor Systems to Ensure Safe and Quality Food
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[90] Soil and Industry
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[92] Application of Nanotechnology for Sustainable Crop Production Systems
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[126] Nanotechnological Interventions for Improving Plant Health and Productivity
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[132] Effect of Nanofertilizers and Biofertilizers on Yield of Maize: Biplot Analysis
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[137] Green Synthesis of Microbial Nanoparticle: Approaches to Application
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[148] Nano-Enabled Technological Interventions for Sustainable Production, Protection, and Storage of Fruit Crops
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[149] Sensors for Food Quality Monitoring
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[150] Environmental and Societal Impact of Nanotechnology
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[151] Evaluation of Anti-microbial and Antioxidant Activity of Green Silver Nanoparticles in Citrus Reticulata L.
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[152] A Vital Role of Nanofertilizers for Sustainable Agriculture in India
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[153] Environmentally Friendly Slow Release Nano-Chemicals in Agriculture: A Synoptic Review
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[154] Potential Applications of Nanotechnology in Agriculture: Current Status and Future Aspects
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[157] Nanotechnology in Bioengineering: Transmogrifying Plant Biotechnology
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[158] Plant-Nanoparticles (NP) Interactions—A Review: Insights into Developmental, Physiological, and Molecular Aspects of Np Phytotoxicity
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[177] Potencial de la nanotecnología en la agricultura
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[179] Nanoagroceuticals & Nanophytochemicals
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[180] Nanotechnology applications in agricultural and biological engineering
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[181] Response of keitte mango trees to spraying nano NPK Mg fertilizers
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[182] The Nanotechnology Revolution: A Global Bibliographic Perspective
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[183] Potential applications and avenues of nanotechnology in sustainable agriculture
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[184] Scientific Role of Transition-Metal Nanoparticles as Agrochemicals
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[185] Global market of nanomaterials and colloidal formulations for agriculture: an overview.
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[187] Nanoscience: Relevance for Agriculture and Food Sector
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[188] Síntesis y evaluación de eficiencia de nanofertilizantes fuente de fósforo.
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[189] RESPONSE OF FLAME SEEDLESS GRAPEVINES TO FOLIAR APPLICATION OF NANO FERTILIZERS
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[193] Nanosensors and nanobiosensors in food and agriculture
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[194] Biosynthesis of Nanoparticles by Microorganisms and Their Significance in Sustainable Agriculture
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[205] Nanosensors for Food and Agriculture
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[209] Effect of Silver Nanoparticles on Growth of Wheat Under Heat Stress
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[210] EFFECT OF INTEGRATED USE OF NANO AND NON NANO-FERTILIZERS ON QUALITY AND PRODUCTIVITY OF WHEAT (Triticum aestivum L.)
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[211] Agricultural Nanotechnologies: Current Applications and Future Prospects
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[212] Nanomaterial-Based Biosensors in Agriculture Application and Accessibility in Rural Smallholding Farms: Food Security
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[213] Research Article TiO2 and ZnO nanoparticles toxicity in Barley (Hordeum vulgare L.)
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[214] Nanotechnology for sustainable food production: promising opportunities and scientific challenges
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[216] Application of Nanofertilizer and Nanopesticides for Improvements in Crop Production and Protection
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[218] ZINC BIOFORTIFICATION OF CEREALS THROUGH FERTILIZERS: RECENT ADVANCES AND FUTURE PERSPECTIVES
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[219] Nanotechnology in Nutraceuticals: Production to Consumption
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[220] NOVEL PROSPECTIVE FOR CHITOSAN BASED NANO-MATERIALS IN PRECISION A TERIALS IN PRECISION A TERIALS IN PRECISION AGRICULTURE-A …
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[221] Nanoparticles and plant growth dynamics: a review
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[222] Agri-nanotechniques for Plant Availability of Nutrients
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[223] Nanosensors applications in agriculture and food industry
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[224] Electron transfer in nanobiodevices
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[225] Nanoparticles: The Next Generation Technology for Sustainable Agriculture
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[226] Understanding the Role of Nanomaterials in Agriculture
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[227] A review on multifaceted application of nanoparticles in the field of bioremediation of petroleum hydrocarbons
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[228] Synthesis and characterization of zeolite based nano–composite: An environment friendly slow release fertilizer
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[229] Nanotechnology and its role in agro-ecosystem: a strategic perspective
International Journal of Environmental Science and Technology, 2016
[230] Nanotechnology in Agriculture
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[231] Applications of Nanotechnology in the Agriculture, Food, and Pharmaceuticals
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[232] Nanotechnology Applications for Sustainable Crop Production
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[233] Nanoparticles: The Next
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[234] Detection of urea using urease and paramagnetic Fe3O4 particles incorporated into polyelectrolyte microcapsules
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[235] Nanotechnology in Food Products: Implications in Regulatory Requirements
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[236] NOVEL PROSPECTIVE FOR CHITOSAN BASED NANO-MATERIALS IN PRECISION A TERIALS IN PRECISION A TERIALS IN PRECISION AGRICULTURE-A …
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[237] Effects of biological Nano-fertilizer on the morphological, physiological and proliferation traits and quality of Buxus hyrcana Pojark.
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[238] Effects of cycling ranges on stress and capacity fade in lithium-ion pouch cells
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[239] NENO FERTILIZERS: FUTURE'S DEMAND
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[240] Department of Agronomy
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[241] STUDIES ON THE EFFECT OF TIME OF APPLICATION AND CONCENTRATION OF NANO ZINC SULPHIDE (ZnS) ON THE GROWTH AND YIELD OF SUNFLOWER …
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[242] ALTERNATING CURRENT ELECTROKINETICS BASED CAPACITIVE AFFINITY BIOSENSOR: A POINT-OF-CARE DIAGNOSTIC PLATFORM
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[243] Fungi as an efficient mycosystem for the synthesis of metal nanoparticles: progress and key aspects of research
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[244] Application of Nanotechnology in medical
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[245] Facets of Nanotechnology as Seen in Food Processing, Packaging, and Preservation Industry
BioMed research international, 2015
[246] Plant-nanoparticle interaction: An approach to improve agricultural practices and plant productivity
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[247] Nanoparticles and plant Biotechnology
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[248] Application of Nanobiosensors in Agriculture
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[249] DNA Electrochemical Nanobiosensors for the Detection of Biological Agents
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[250] Nanofertilizers–A Revolutionary Fertilizer for Sustainable Agriculture
International Journal of Applied Nanotechnology, 2015
[251] Morphological and ultra structural changes induced by chromium and chelate assisted phytoextraction in sesbania grandiflora (L.) PERS
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[252] Enhancing Nutrient Use Efficiency through Nano Technological Interventions
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[253] The use of nanotechnology in the agriculture
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[254] Nanotechnology for Better Fertilizer Use
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[255] New strategies and challenges for nanobiotechnology in agriculture
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[256] Nanotechnology Pros and Cons to Agriculture: A Review
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[257] Nanotechnology in agri-food production: an overview
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[258] Going small: From an idea to technological development
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[259] Fundamentals and New Aspects
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[260] Nanobiossensores: conceito e aplicações na avaliação de parâmetros bioquímicos e diagnóstico precoce de patologias
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[261] Nano based smart delivery system of Zinc for rice oryza sativa l
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[262] Nanofertilizers and their roles in sustainable agriculture.
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[263] Nanofertilizers and their roles in sustainable agriculture
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[264] Biosensors for contaminants monitoring in food and environment for human and environmental health
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[265] Modifying enzyme activity and selectivity by immobilization
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[266] Recent advances in plant science/[Filiz Vardar, Yıldız Aydın, Ahu
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[267] Nanotechnology in Developing Abiotic Stress Resilience in Crops: A Physiological Implication
[268] 13 Application of Microbial Nanotechnology in Agriculture
[269] Nano-biosensors: A New Future for Diagnosis and Modern Analysis
[270] 189 Potential of Nanobiosensors for Environmental Pollution Detection: Nanotechnology Combined with Enzymes, Antibodies, and Microorganisms
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[271] Agri-India TODAY
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