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Nanotechnology is the application of science to control matter at the molecular level. It has become one of the most promising applied technologies in all areas of science. Nanoparticles have multi-functional properties and have created very interesting applications in various fields such as medicine, nutrition, bioenergy, agriculture and the environment. But the biogenic syntheses of monodispersed nanoparticles with specific sizes and shapes have been a challenge in biomaterial science. Nanoparticles are of great interest due to their extremely small size and large surface-to-volume ratio, which lead to both chemical and physical differences in their properties (e.g., mechanical properties, biological and sterical properties, catalytic activity, thermal and electrical conductivity, optical absorption and melting point) compared to bulk of the same chemical composition. Recently, however, synthesizing metal nanoparticles using green technology via microorganisms, plants, viruses, and so on, has been extensively studied and has become recognized as a green and efficient way for further exploiting biological systems as convenient nanofactories. Thus the biological synthesis of nanoparticles is increasingly regarded as a rapid, ecofriendly, and easily scaled-up technology. Today researchers are developing new techniques and materials using nanotechnology that may be suitable for plants to boost their native functions. Recently, biological nanoparticles were found to be more pharmacologically active than physico-chemically synthesized nanoparticles. Various applications of biosynthesized nanoparticles have been discovered, especially in the field of biomedical research, such as applications to specific delivery of drugs, use for tumor detection, angiogenesis, genetic disease and genetic disorder diagnosis, photoimaging, and photothermal therapy. Further, iron oxide nanoparticles have been applied to cancer therapy, hyperthermia, drug delivery, tissue repair, cell labeling, targeting and immunoassays, detoxification of biological fluids, magnetic resonance imaging, and magnetically responsive drug delivery therapy. Nanoparticle synthesis for plant byproducts for biomedical applications has vast potential. This book offers researchers in plant science and biomedicine the latest research and opportunity to develop new tools for the synthesis of environmentally friendly and cost-effective nanoparticles for applications in biomedicine as well as other various fields.
Nanoparticles. --- Nanostructured materials --- Particles --- Nano-particles --- NPs (Nanoparticles) --- Nanoscale particles --- Plant breeding. --- Nanotechnology. --- Plant biochemistry. --- Plant systematics. --- Plant taxonomy. --- Plant anatomy. --- Plant development. --- Plant Breeding/Biotechnology. --- Plant Biochemistry. --- Plant Systematics/Taxonomy/Biogeography. --- Plant Anatomy/Development. --- Development of plants --- Plant development --- Developmental biology --- Growth (Plants) --- Plants --- Botany --- Plant structure --- Structural botany --- Vegetable anatomy --- Anatomy --- Botanical classification --- Botanical systematics --- Botanical taxonomy --- Classification --- Plant biosystematics --- Plant classification --- Plant systematics --- Plant taxonomy --- Systematic botany --- Systematics (Botany) --- Taxonomy, Plant --- Plant taxonomists --- Phytochemistry --- Plant biochemistry --- Plant chemistry --- Biochemistry --- Phytochemicals --- Plant biochemical genetics --- Molecular technology --- Nanoscale technology --- High technology --- Crops --- Agriculture --- Breeding --- Ontogeny --- Structure --- Nanotecnologia --- Fitoquímica --- Enginyeria molecular --- Tecnologia molecular --- Alta tecnologia --- Electrònica molecular --- Espintrònica --- Materials nanoestructurats --- Nanoelectrònica --- Nanolitografia --- Nanomedicina --- Nanoquímica --- Bioquímica de les plantes --- Bioquímica vegetal --- Botànica química --- Química botànica --- Química de les plantes --- Química vegetal --- Bioquímica --- Hormones vegetals --- Pigments vegetals --- Proteïnes vegetals --- Biologia molecular vegetal --- Plant biotechnology. --- Botanical chemistry. --- Plant Biotechnology. --- Plant Evolution. --- Plant Development. --- Evolution. --- Development. --- Plant evolution --- Evolution (Biology) --- Crop biotechnology --- Agricultural biotechnology --- Phylogeny --- Biotechnology
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Systematics. Taxonomy. Nomenclature --- Plant physiology. Plant biophysics --- Phytomorphology. Phytoanatomy --- Botany --- Electrical engineering --- Agriculture. Animal husbandry. Hunting. Fishery --- Biochemical engineering --- systematische plantkunde --- plantenfysiologie --- nanotechniek --- biogeografie --- biochemie --- bevolking --- planten
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Nanotechnology is the application of science to control matter at the molecular level. It has become one of the most promising applied technologies in all areas of science. Nanoparticles have multi-functional properties and have created very interesting applications in various fields such as medicine, nutrition, bioenergy, agriculture and the environment. But the biogenic syntheses of monodispersed nanoparticles with specific sizes and shapes have been a challenge in biomaterial science. Nanoparticles are of great interest due to their extremely small size and large surface-to-volume ratio, which lead to both chemical and physical differences in their properties (e.g., mechanical properties, biological and sterical properties, catalytic activity, thermal and electrical conductivity, optical absorption and melting point) compared to bulk of the same chemical composition. Recently, however, synthesizing metal nanoparticles using green technology via microorganisms, plants, viruses, and so on, has been extensively studied and has become recognized as a green and efficient way for further exploiting biological systems as convenient nanofactories. Thus the biological synthesis of nanoparticles is increasingly regarded as a rapid, ecofriendly, and easily scaled-up technology. Today researchers are developing new techniques and materials using nanotechnology that may be suitable for plants to boost their native functions. Recently, biological nanoparticles were found to be more pharmacologically active than physico-chemically synthesized nanoparticles. Various applications of biosynthesized nanoparticles have been discovered, especially in the field of biomedical research, such as applications to specific delivery of drugs, use for tumor detection, angiogenesis, genetic disease and genetic disorder diagnosis, photoimaging, and photothermal therapy. Further, iron oxide nanoparticles have been applied to cancer therapy, hyperthermia, drug delivery, tissue repair, cell labeling, targeting and immunoassays, detoxification of biological fluids, magnetic resonance imaging, and magnetically responsive drug delivery therapy. Nanoparticle synthesis for plant byproducts for biomedical applications has vast potential. This book offers researchers in plant science and biomedicine the latest research and opportunity to develop new tools for the synthesis of environmentally friendly and cost-effective nanoparticles for applications in biomedicine as well as other various fields.
Systematics. Taxonomy. Nomenclature --- Plant physiology. Plant biophysics --- Phytomorphology. Phytoanatomy --- Botany --- Electrical engineering --- Agriculture. Animal husbandry. Hunting. Fishery --- Biochemical engineering --- systematische plantkunde --- plantenfysiologie --- nanotechniek --- biogeografie --- biochemie --- bevolking --- planten
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This book explores the development of nanopesticides and tests of their biological activity against target organisms. It also covers the effects of nanopesticides in the aquatic and terrestrial environments, along with related subjects including fate, behaviour, mechanisms of action and toxicity. Moreover, the book discusses the potential risks of nanopesticides for non-target organisms, as well as regulatory issues and future perspectives.
Agriculture. --- Nanotechnology. --- Ecotoxicology. --- Nanochemistry. --- Environmental policy. --- Nanotechnology and Microengineering. --- Environmental Policy. --- Environment and state --- Environmental control --- Environmental management --- Environmental protection --- Environmental quality --- State and environment --- Environmental auditing --- Nanoscale chemistry --- Chemistry, Analytic --- Nanoscience --- Ecotoxicology --- Pollutants --- Pollution --- Environmental health --- Toxicology --- Molecular technology --- Nanoscale technology --- High technology --- Farming --- Husbandry --- Industrial arts --- Life sciences --- Food supply --- Land use, Rural --- Government policy --- Analytical chemistry --- Pesticides --- Technological innovations. --- Economic poisons --- Agricultural chemicals --- Pests --- Poisons --- Control --- Equipment and supplies --- Nanoquímica --- Nanotecnologia --- Plaguicides --- Agricultura --- Agronomia --- Ciències de la vida --- Agricultura biològica --- Agricultura de muntanya --- Agricultura de precisió --- Agricultura de subsistència --- Agricultura sostenible --- Agricultura urbana --- Agrosilvicultura --- Aqüicultura --- Arbres --- Boscos --- Climatologia agrícola --- Conreu --- Conreus de regadiu --- Conreus extensius --- Dones en l'agricultura --- Extensió agrària --- Floricultura --- Indústria agrícola --- Indústria ramadera --- Investigació agrícola --- Jardineria --- Millorament selectiu de plantes --- Pagesia --- Pastures --- Productes agrícoles --- Protecció de les plantes --- Revolució verda --- Silvicultura --- Zootècnia --- Història de l'agricultura --- Pagesos --- Ramaderia --- Productes químics agrícoles --- Acaricides --- Insecticides --- Resistència als plaguicides --- Control de plagues --- Enginyeria molecular --- Tecnologia molecular --- Alta tecnologia --- Electrònica molecular --- Espintrònica --- Materials nanoestructurats --- Nanoelectrònica --- Nanolitografia --- Nanomedicina --- Química en nanoescala --- Nanociència --- Química --- Environmental toxicology. --- Plaguicides. --- Agricultura.
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This book explores the development of nanopesticides and tests of their biological activity against target organisms. It also covers the effects of nanopesticides in the aquatic and terrestrial environments, along with related subjects including fate, behaviour, mechanisms of action and toxicity. Moreover, the book discusses the potential risks of nanopesticides for non-target organisms, as well as regulatory issues and future perspectives.
Political philosophy. Social philosophy --- Chemical structure --- Chemistry --- General ecology and biosociology --- Toxicology --- Electrical engineering --- Environmental protection. Environmental technology --- Agriculture. Animal husbandry. Hunting. Fishery --- moleculen --- ecotoxicologie --- nanotechniek --- chemie --- landbouw --- milieubeleid --- atomen
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Political philosophy. Social philosophy --- Chemical structure --- Chemistry --- General ecology and biosociology --- Toxicology --- Electrical engineering --- Environmental protection. Environmental technology --- Agriculture. Animal husbandry. Hunting. Fishery --- moleculen --- ecotoxicologie --- nanotechniek --- chemie --- landbouw --- milieubeleid --- atomen
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