01243nam0 2200349 i 450 VIA008052820251003044440.08877506091IT2000-8826 20130827d1999 ||||0itac50 baitaitz01i xxxe z01nMetabolismo e prodotti secondari delle pianteMassimo Maffeipresentazione di Carlo BicchiTorinoUTET università1999X, 350 p. :ill.24 cm.Biologia001CFI04840712001 BiologiaRicambio vegetaleApplicazioniFIRCFIC113723I572BIOCHIMICA14581.1912Maffei, Massimo <1957- >MILV16506407065396Bicchi, CarloCFIV023288ITIT-00000020130827IT-BN0095 NAP 01SALA $VIA0080528Biblioteca Centralizzata di Ateneo 01SALA 572 MAF me 0104 9000005575 VMA 1 v.A 2012092620120926 01Metabolismo e prodotti secondari delle piante1576426UNISANNIO03663nam 2200973z- 450 991055710540332120210501(CKB)5400000000040993(oapen)https://directory.doabooks.org/handle/20.500.12854/68999(oapen)doab68999(oapen)68999(EXLCZ)99540000000004099320202105d2020 |y 0engurmn|---annantxtrdacontentcrdamediacrrdacarrierFunctional Polymers in Sensors and Actuators: Fabrication and AnalysisBasel, SwitzerlandMDPI - Multidisciplinary Digital Publishing Institute20201 online resource (166 p.)3-03936-868-0 3-03936-869-9 Recent advances in the fabrication techniques have enabled the production of different types of polymer sensors and actuators that can be utilized in a wide range of applications, such as soft robotics, biomedical, smart textiles and energy harvesting. Functional polymers possess dynamic physical and chemical properties, which make them suitable candidates for sensing and actuating tasks in response to external stimuli, such as radiation, temperature, chemical reaction, external force, magnetic and electric fields. This book focuses on the recent advancements in the modeling and analysis of functional polymer systems.Functional Polymers in Sensors and ActuatorsHistory of engineering and technologybicssc3D printing4-(1,1,3,3-Tetramethylbutyl)phenyl-polyethylene glycol4D printingactuatorsbandgapbiomedicalcantilever beamchitin nanofiberscolloidal crystalsdielectric propertiesdynamic hydrogelselectromagnetic (EM) actuatorelectrospinningelectrostrictive propertiesexperimental verificationfinite element methodforce-electric coupling characteristicsfunctional polymersgraphene oxidehydrogelsIIECMSionic electroactive polymermagnetic membranemetastructuremicroelectromechanical system (MEMS)microfluidicmulti-parameter perturbation methodMWCNT-CDC fibersoptical filmP(VDF-HFP) nanofiberspH sensorpiezoelectric polymerspoly(3,4-ethylenedioxythiophene)-poly(styrenesulfonate) (PEDOT:PSS)polymer compositespolymer gelPPy/DBS linear filmsself-healingself-recoverysensorsensorsshape-memory polymerssilver nanowiresstarchstructural β-phasetannic acidthermal compressiontoughuncertainty measurementswave propagationHistory of engineering and technologyKaynak Akifedt1281268Zolfagharian AliedtKaynak AkifothZolfagharian AliothBOOK9910557105403321Functional Polymers in Sensors and Actuators: Fabrication and Analysis3034987UNINA