Synthesis of biomorphic tube-like CuO using pomelo white flesh as biotemplate and its sensing properties over H2S at room temperature
Author:
Publisher
Springer Science and Business Media LLC
Subject
Mechanical Engineering,Mechanics of Materials,General Materials Science
Link
http://link.springer.com/article/10.1007/s10853-017-1471-1/fulltext.html
Reference16 articles.
1. Chen MM, Huang CL, Chu W, Hou LP, Tong DG (2017) Synthesis of graphene-like CuB23 nanosheets with a fast and stable response to H2S at ppb detection levels. J Mater Chem C 5:3216–3221
2. Gao XM, Sun Y, Zhu CL, Li CY, Ouyang QY, Chen YJ (2017) Highly sensitive and selective H2S sensor based on porous ZnFe2O4 nanosheets. Sens Actuators B 246:662–672
3. Yassine O, Shekhah O, Assen AH, Belmabkhout Y, Salama KN, Eddaoudi M (2016) H2S Sensors: fumarate-based fcu-MOF thin film grown on a capacitive interdigitated electrode. Angew Chem Int Ed 55:15879–15883
4. Fu DY, Zhu CL, Zhang XT, Li CY, Chen YJ (2016) Two-dimensional net-like SnO2/ZnO heteronanostructures for high-performance H2S gas sensor. J Mater Chem A 4:1390–1398
5. Li ZJ, Wang NN, Lin ZJ, Wang JQ, Liu W, Sun K, Fu YQ, Wang ZG (2016) Room-temperature high-performance H2S sensor based on porous CuO nanosheets prepared by hydrothermal method. ACS Appl Mater Interfaces 8:20962–20968
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