Page 721 - Polymer-based Nanocomposites for Energy and Environmental Applications
P. 721

664                                                              Index

         Bionanocomposites                      nanofiber, 651–655
           as adsorbents, 444                   silica nanoparticles, 648–651
           cellulose based, 454–456           in imidazolium ionic liquids, 328f
           chitin based, 457                  ionic liquids as electrolyte for, 327
           chitosan based, 449–453            mechanical, electric, and thermal
           ChNC, 446                            properties, 643, 644t
           CNCSL, 445–446                     multiwalled, 9
           CNFSL, 445                         single-walled, 9
           properties, 447                    structures, 638f
           surface modified                   wind energy capacity 2001–16, 637f
             enzymatic phosphorylation, 447   wind turbine applications
             TEMPO-mediated oxidation technique,  electrostatic properties, 643
             446                                fatigue resistance, 641–642
           water treatment, 444–445             fracture toughness, 642–643
         Biopolyester-based green composites, 623  wind turbine blades, nanocomposite
         Biopolymer(s), 412                     coating for, 655–656
           cellulose, 159                   Carbon nanotube-reinforced composite
         Biosensor, 205–206, 208–209            (CNTRC), 51
         Biosorption, 443–444               Catalytic degradation, 192–193
         Bruggeman’s formula, 147           CdSe QDs, 515, 516f, 517
                                            Cellulose, 289
                                              composite films, 397–401
         C                                    nanofibril, 456
         Cadmium telluride (CdTe), 512        silver-coated polymer nanocomposite
         Calcium alginate composites, 453       films, 400–401
         Capture efficiency, 554–556        Cellulose based bionanocomposites
         Carbon(s), 322                       CNC, 454–455
           activated, 315–316                 CNF, 454
           coating, 247–248                   MFC, 454
           nanocomposites, heteroatom-doped, 298  nanocellulose-based materials, 455–456
           nanofiber-reinforced glass fiber/epoxy  water treatment, 456
             matrix-based hybrid composites, 651  Cellulose-based nanocomposites, 624
           nanomaterials, 298               Cellulose nanocrystal (CNC), 454–455,
         Carbon-based flexible CEs, 375–377, 376f  646–648
         Carbon-based materials, 640t         bioethanol production process, 445–446
         Carbon fiber-reinforced polymers (CFRP),  Cellulose nanocrystals isolated from cellulose
             41, 646                            sludge (CNCSL), 445
         Carbon fibers, 44–45               Cellulose nanofibers (CNF), 444–445, 448,
           plasma-modified and sized, 45f       454
           unmodified, 44f                  Cellulose nanofibers from cellulose sludge
         Carbon nanofibers (CNF), 336–337       (CNFSL), 445
           graphene oxide, 347              Centrifugal spinning, 336
           membrane, 409–410                Ceramic materials, ion conduction in,
         Carbon nanotube (CNT), 9–10, 106–107,  287–288
             107f, 206, 232–233, 323, 323f,  Ceramic membranes, 429
             327, 387                       Ceramics, 287–289
           alternative nanocomposites       Chemical/biosensor applications, 118–119,
             cellulose nanocrystals, 646–648    118t
             nanoclay, 644–646              Chemical blowing agents (CBA), 93
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