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Encapsulation of metal layers within metal-organic frameworks as hybrid thin films for selective catalysis 被引量:2
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作者 Zhiling Xu Weina Zhang +3 位作者 jiena weng Wei Huang Danbi Tian Fengwei Huo 《Nano Research》 SCIE EI CAS CSCD 2016年第1期158-164,共7页
A facile encapsulation strategy for the preparation of metal layer/metal-organic framework (metal/MOF) hybrid thin films, by alternately growing MOF thin films and sputter-coating metal layers, is reported. The cont... A facile encapsulation strategy for the preparation of metal layer/metal-organic framework (metal/MOF) hybrid thin films, by alternately growing MOF thin films and sputter-coating metal layers, is reported. The controlled species of the MOF thin films and metal layers, as well as the designed thickness of MOF thin films, endow the resulting hybrid thin films with improved functional and design flexibility. Importantly, the metaL/MOF hybrid thin films, with well-defined sandwich structures, exhibit excellent selective catalytic activity, derived from MOFs acting as molecular sieves and the metal layers providing active sites. 展开更多
关键词 metal-organic frameworks CATALYSIS hybrid thin films metal layers composition
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Green-synthesized,low-cost tetracyanodiazafluorene(TCAF) as electron injection material for organic light-emitting diodes
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作者 Bing Yang Jianfeng Zhao +9 位作者 Zepeng Wang Zhenlin Yang Zongqiong Lin Yanni Zhang Jiewei Li Linghai Xie Zhongfu An Hongmei Zhang jiena weng Wei Huang 《Chinese Chemical Letters》 SCIE CAS CSCD 2019年第11期1969-1973,共5页
Two electron-deficient azaacenes including di-and tetra-cyanodiazafluorene(DCAF and TCAF)with the advantages of deep lowest unoccupied molecular orbital(LUMO),green-synthesis,low-cost,simply purification method,excell... Two electron-deficient azaacenes including di-and tetra-cyanodiazafluorene(DCAF and TCAF)with the advantages of deep lowest unoccupied molecular orbital(LUMO),green-synthesis,low-cost,simply purification method,excellent yields have been obtained,characterized and used as electron injection materials(EIMs)in three groups of electroluminescence devices.Device B with TCAF as EIM exhibited the best performance including turn-on voltage of 5.0 V,stronger maximum luminance intensity of 31,549 cd/m2,higher luminance efficiency of 62.34 cd/A and larger power efficiency of 21.74 lm/W which are 0.53,6.7,9.3 and 15.3 times than that of device A with DCAF as EIMs,respectively.The enhanced interfacial electron injection ability of TCAF than that of DCAF is supported by its better electron mobility in electron-only device,deeper LUMO(-4.52 eV),and stronger electronic affinity.Best external quantum efficiency of 16.56%was achieved with optimized thicknesses of TCAF as EIM and TPBi as electron transporting layer.As a new comer of acceptor family,TCAF would push forward organic electronics with more fascinating and significant applications. 展开更多
关键词 Green-synthesis ACCEPTOR Tetracyanodiazafluorene(TCAF) Electron-injection material Organic light-emitting diode
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