Detalhes do Documento

Di-ureasil hybrids doped with LiBF4 : attractive candidates as electrolytes for...

Autor(es): Barbosa, P. C. cv logo 1 ; Fernandes, M. cv logo 2 ; Silva, Maria Manuela cv logo 3 ; Smith, Michael John cv logo 4 ; Vilela, Sérgio M. F. cv logo 5 ; Gonçalves, A. cv logo 6 ; Olveira, M. C. cv logo 7 ; Fortunato, E. cv logo 8 ; Rego, R. cv logo 9 ; Zea Bermudez, V. de cv logo 10

Data: 2011

Identificador Persistente: http://hdl.handle.net/1822/13611

Origem: RepositóriUM - Universidade do Minho

Assunto(s): Solid polymer electrolyte; Ionic conductivity; Thermal analysis; Electrocehmical satbility; Organic/inorganic hybrid electrolytes; Lithium trifluoroborate; Ionic conductivity; Cyclic voltammetry; Electrochromic device


Descrição
The sol-gel process has been used to prepare hybrid electrolytes composed of a poly(oxyethylene) (POE)/siloxane hybrid network doped with lithium tetrafluoroborate (LiBF4) with compositions of n between ∞ and 2.5. In this context the lithium salt concentration is expressed in terms of the number of oxyethylene units in the organic component of the network per Li+ ion. Electrolyte samples with n ≥ 20 are thermally stable up to approximately 250 ºC. All the materials synthesized are semi-crystalline: in the composition range n ≥ 15 free crystalline POE exists and at 60 ≥ n ≥ 2.5 evidence of the presence of a crystalline POE/LiBF4 compound has been found. At n = 2.5 this latter crystalline phase coexists with free salt. The room temperature conductivity maximum of this electrolyte system is located at n = 10 (1.5x10-5 S cm-1 at 22 ºC). The electrochemical stability domain of the sample with n = 15 spans about 5.5 V versus Li/Li+. This new series of materials represents a promising alternative to the LiTFSI- and LiClO4-doped POE and POE/siloxane analogues. Preliminary tests performed with a prototype electrochromic device (ECD) comprising the sample with n = 8 as electrolyte and WO3 as cathodically coloring layer are extremely encouraging. The device exhibits switching time around 50 s, an optical density change of 0.13, open circuit memory of about 4 months and high coloration efficiency (106 cm2C-1 in the 3rd cycle).
Tipo de Documento Artigo
Idioma Inglês
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