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Nanoclustered Pd decorated nanocrystalline Zn doped SnO_2 for ppb NO_2 detection at low temperature

机译:纳米簇钯装饰的纳米晶掺杂锌的SnO_2用于低温下ppb NO_2的检测

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Nanoclustered Pd (2 mol%) was used to decorate Zn doped SnO2 (10 mol% Zn) in order to increase its sensing performances. Zn doped SnO2 built from nanoparticles was prepared by a hydrothermal method using a nonionic surfactant -Brij52 and Tripropylamine (TPA) as co-templates. The presence of well-dispersed Zn2+ ions in the SnO2 matrix leads to a nonstoichiometric surface. Pd was deposited by subsequent wet impregnation using hydrazine as reducing agent. The as obtained powders were deposited as thick layers onto commercial substrates, in order to obtain the sensitive structures. The coexistence of a mixture of valence states (Pd-0, Pd2+ and Pd4+) was highlighted on the surface of the as prepared layers. Several aspects have been followed regarding the Zn and Pd dispersion into the SnO2 matrix: the large scale and low scale morphology (SEM and TEM/HRTEM) in relation with the synthesis route, the obtained crystallographic phases (XRD, SAED) and the way in which the Zn2+ ions are inserted into the SnO2 structure (XRD, XPS, EPR), the spatial distribution of the added chemical elements, Zn and Pd (SEM, STEM, EDS). All these morphological and structural aspects, as well as the Pd surface chemistry, have been correlated with the sensing properties of the nanostructured materials under controlled gas atmosphere. Through this study, we could harvest the specific role of the aforementioned loadings towards selective detection of low NO2 concentrations, between 350 ppb to 5 ppm, at low operating temperature of 100 degrees C, for infield conditions.
机译:为了提高其感测性能,使用了纳米簇化的Pd(2摩尔%)来装饰Zn掺杂的SnO2(10摩尔%Zn)。使用非离子表面活性剂-Brij52和三丙胺(TPA)作为共模板,通过水热法制备了由纳米颗粒构成的Zn掺杂SnO2。 SnO2基质中存在良好分散的Zn2 +离子会导致表面化学计量不当。通过随后使用肼作为还原剂的湿浸渍来沉积Pd。将所获得的粉末作为厚层沉积在商业基板上,以获得敏感结构。在准备好的层的表面上突出显示了价态混合物(Pd-0,Pd2 +和Pd4 +)的共存。 Zn和Pd分散到SnO2基质中的方面有以下几个方面:与合成路线,获得的结晶相(XRD,SAED)以及合成方法有关的大尺寸和小尺寸形态(SEM和TEM / HRTEM)。将Zn2 +离子插入SnO2结构(XRD,XPS,EPR),添加的化学元素Zn和Pd的空间分布(SEM,STEM,EDS)。所有这些形态和结构方面以及Pd表面化学性质都与受控气体气氛下纳米结构材料的感测特性相关。通过这项研究,我们可以在田间条件下,在100摄氏度的低工作温度下,获得上述负载对选择性检测350 ppb至5 ppm的低NO2浓度的特殊作用。

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