Hydrothermal fabrication and characterization of polycrystalline linneite (Co3S4) nanotubes based on the Kirkendall effect. Chen, X., Zhang, Z., Qiu, Z., Shi, C., & Li, X. Journal of Colloid and Interface Science, 308(1):271–275, April, 2007.
Paper doi abstract bibtex In this study, polycrystalline linneite (Co3S4) nanotubes constructed with nanoparticles have been firstly fabricated using 1D Co(CO3)0.35Cl0.20(OH)1.10 nanowires as the sacrificial templates under hydrothermal conditions. The samples are characterized by means of XRD and TEM. The formation mechanism of the Co3S4 nanotubes can be explained by the nanoscale Kirkendall effect, which results from the difference in diffusion rates between cobalt source and hydrogen sulfide. This simple synthetic route is expected to prepare other nanomaterials with the tubular structures.
@article{chen_hydrothermal_2007,
title = {Hydrothermal fabrication and characterization of polycrystalline linneite ({Co3S4}) nanotubes based on the {Kirkendall} effect},
volume = {308},
issn = {00219797},
url = {https://linkinghub.elsevier.com/retrieve/pii/S0021979706011945},
doi = {10.1016/j.jcis.2006.12.054},
abstract = {In this study, polycrystalline linneite (Co3S4) nanotubes constructed with nanoparticles have been firstly fabricated using 1D Co(CO3)0.35Cl0.20(OH)1.10 nanowires as the sacrificial templates under hydrothermal conditions. The samples are characterized by means of XRD and TEM. The formation mechanism of the Co3S4 nanotubes can be explained by the nanoscale Kirkendall effect, which results from the difference in diffusion rates between cobalt source and hydrogen sulfide. This simple synthetic route is expected to prepare other nanomaterials with the tubular structures.},
language = {en},
number = {1},
urldate = {2021-05-07},
journal = {Journal of Colloid and Interface Science},
author = {Chen, Xiangying and Zhang, Zhongjie and Qiu, Zhiguo and Shi, Chengwu and Li, Xueliang},
month = apr,
year = {2007},
pages = {271--275},
}
Downloads: 0
{"_id":"Gjktvgao62NrFs3rC","bibbaseid":"chen-zhang-qiu-shi-li-hydrothermalfabricationandcharacterizationofpolycrystallinelinneiteco3s4nanotubesbasedonthekirkendalleffect-2007","author_short":["Chen, X.","Zhang, Z.","Qiu, Z.","Shi, C.","Li, X."],"bibdata":{"bibtype":"article","type":"article","title":"Hydrothermal fabrication and characterization of polycrystalline linneite (Co3S4) nanotubes based on the Kirkendall effect","volume":"308","issn":"00219797","url":"https://linkinghub.elsevier.com/retrieve/pii/S0021979706011945","doi":"10.1016/j.jcis.2006.12.054","abstract":"In this study, polycrystalline linneite (Co3S4) nanotubes constructed with nanoparticles have been firstly fabricated using 1D Co(CO3)0.35Cl0.20(OH)1.10 nanowires as the sacrificial templates under hydrothermal conditions. The samples are characterized by means of XRD and TEM. The formation mechanism of the Co3S4 nanotubes can be explained by the nanoscale Kirkendall effect, which results from the difference in diffusion rates between cobalt source and hydrogen sulfide. This simple synthetic route is expected to prepare other nanomaterials with the tubular structures.","language":"en","number":"1","urldate":"2021-05-07","journal":"Journal of Colloid and Interface Science","author":[{"propositions":[],"lastnames":["Chen"],"firstnames":["Xiangying"],"suffixes":[]},{"propositions":[],"lastnames":["Zhang"],"firstnames":["Zhongjie"],"suffixes":[]},{"propositions":[],"lastnames":["Qiu"],"firstnames":["Zhiguo"],"suffixes":[]},{"propositions":[],"lastnames":["Shi"],"firstnames":["Chengwu"],"suffixes":[]},{"propositions":[],"lastnames":["Li"],"firstnames":["Xueliang"],"suffixes":[]}],"month":"April","year":"2007","pages":"271–275","bibtex":"@article{chen_hydrothermal_2007,\n\ttitle = {Hydrothermal fabrication and characterization of polycrystalline linneite ({Co3S4}) nanotubes based on the {Kirkendall} effect},\n\tvolume = {308},\n\tissn = {00219797},\n\turl = {https://linkinghub.elsevier.com/retrieve/pii/S0021979706011945},\n\tdoi = {10.1016/j.jcis.2006.12.054},\n\tabstract = {In this study, polycrystalline linneite (Co3S4) nanotubes constructed with nanoparticles have been firstly fabricated using 1D Co(CO3)0.35Cl0.20(OH)1.10 nanowires as the sacrificial templates under hydrothermal conditions. The samples are characterized by means of XRD and TEM. The formation mechanism of the Co3S4 nanotubes can be explained by the nanoscale Kirkendall effect, which results from the difference in diffusion rates between cobalt source and hydrogen sulfide. This simple synthetic route is expected to prepare other nanomaterials with the tubular structures.},\n\tlanguage = {en},\n\tnumber = {1},\n\turldate = {2021-05-07},\n\tjournal = {Journal of Colloid and Interface Science},\n\tauthor = {Chen, Xiangying and Zhang, Zhongjie and Qiu, Zhiguo and Shi, Chengwu and Li, Xueliang},\n\tmonth = apr,\n\tyear = {2007},\n\tpages = {271--275},\n}\n\n","author_short":["Chen, X.","Zhang, Z.","Qiu, Z.","Shi, C.","Li, X."],"key":"chen_hydrothermal_2007","id":"chen_hydrothermal_2007","bibbaseid":"chen-zhang-qiu-shi-li-hydrothermalfabricationandcharacterizationofpolycrystallinelinneiteco3s4nanotubesbasedonthekirkendalleffect-2007","role":"author","urls":{"Paper":"https://linkinghub.elsevier.com/retrieve/pii/S0021979706011945"},"metadata":{"authorlinks":{}},"html":""},"bibtype":"article","biburl":"https://bibbase.org/zotero/pmanti","dataSources":["t4G55bmn46QNNuAWs"],"keywords":[],"search_terms":["hydrothermal","fabrication","characterization","polycrystalline","linneite","co3s4","nanotubes","based","kirkendall","effect","chen","zhang","qiu","shi","li"],"title":"Hydrothermal fabrication and characterization of polycrystalline linneite (Co3S4) nanotubes based on the Kirkendall effect","year":2007}