Here, we report a facile production of citral/cyclodextrin (CD) inclusion complex (IC) nanofibers (NFs) from three types of CDs (hydroxypropyl-beta-cyclodextrin (HPβCD), hydroxypropyl-gamma-cyclodextrin (HPγCD), and methylated-beta-cyclodextrin (MβCD)) by an electrospinning technique without the need of any polymeric carrier matrix. Self-standing nanofibrous webs of citral/CD-IC nanofibers (citral/CD-IC-NF) with uniform fiber morphology have been successfully electrospun from aqueous solutions of citral/CD-IC. Thanks to the inclusion complex formed with CDs, the efficient preservation of citral (up to ~80%) in citral/CD-IC-NFs was observed. In addition, the citral/CD-IC-NFs have shown ~50% preservation of citral for 15 days ...
Electrospinning of nanofibers from non-polymeric systems is rather challenging, yet in this study, w...
Electrospinning of polyacrylic acid (PAA) nanofibres (NF) incorporating β-cyclodextrin inclusion com...
The electrospinning of polymer-free nanofibers from highly concentrated (160%, w/v) aqueous solution...
Here, we report a facile production of citral/cyclodextrin (CD) inclusion complex (IC) nanofibers (N...
In this study, we produce functional nanofibers/nanowebs containing active agents such as essential ...
Cyclodextrins (CDs) can endow electrospun fibers with outstanding performance characteristics that r...
The fabrication of nanofibers by electrospinning has gained popularity in the past two decades; howe...
The present review discusses the use of cyclodextrins and their derivatives to prepare electrospun n...
In this study, we obtained functional electrospun nanofibers containing stable fragrance/flavor mole...
Polyvinyl alcohol (PVA) nanofibers encapsulating eugenol (EG)/cyclodextrin (CD) inclusion complexes ...
(Figure Presented) Spinning a web: The electrospinning of cyclodextrin (CD) pseudopolyrotaxane, 	...
High molecular weight polymers and high polymer concentrations are desirable for the electrospinning...
We have demonstrated that cyclodextrin (CD) (a non-polymeric system) can be electrospun into nanofib...
Electrospinning of nanofibers with cyclodextrin inclusion complexes (CD-ICs) is particularly attract...
We have proposed a new strategy for preparing free-standing nanofibrous webs from an inclusion compl...
Electrospinning of nanofibers from non-polymeric systems is rather challenging, yet in this study, w...
Electrospinning of polyacrylic acid (PAA) nanofibres (NF) incorporating β-cyclodextrin inclusion com...
The electrospinning of polymer-free nanofibers from highly concentrated (160%, w/v) aqueous solution...
Here, we report a facile production of citral/cyclodextrin (CD) inclusion complex (IC) nanofibers (N...
In this study, we produce functional nanofibers/nanowebs containing active agents such as essential ...
Cyclodextrins (CDs) can endow electrospun fibers with outstanding performance characteristics that r...
The fabrication of nanofibers by electrospinning has gained popularity in the past two decades; howe...
The present review discusses the use of cyclodextrins and their derivatives to prepare electrospun n...
In this study, we obtained functional electrospun nanofibers containing stable fragrance/flavor mole...
Polyvinyl alcohol (PVA) nanofibers encapsulating eugenol (EG)/cyclodextrin (CD) inclusion complexes ...
(Figure Presented) Spinning a web: The electrospinning of cyclodextrin (CD) pseudopolyrotaxane, 	...
High molecular weight polymers and high polymer concentrations are desirable for the electrospinning...
We have demonstrated that cyclodextrin (CD) (a non-polymeric system) can be electrospun into nanofib...
Electrospinning of nanofibers with cyclodextrin inclusion complexes (CD-ICs) is particularly attract...
We have proposed a new strategy for preparing free-standing nanofibrous webs from an inclusion compl...
Electrospinning of nanofibers from non-polymeric systems is rather challenging, yet in this study, w...
Electrospinning of polyacrylic acid (PAA) nanofibres (NF) incorporating β-cyclodextrin inclusion com...
The electrospinning of polymer-free nanofibers from highly concentrated (160%, w/v) aqueous solution...