3D-bioprinting approach to fabricate superhydrophobic epoxy/organophilic clay as an advanced anticorrosive coating with the synergistic effect of superhydrophobicity and gas barrier properties

3D-bioprinting approach to fabricate superhydrophobic epoxy/organophilic clay as an advanced anticorrosive coating with the synergistic effect of superhydrophobicity and gas barrier properties
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DOI:
10.1039/c3ta12754k
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发表时间:
2013-10
影响因子:
--
通讯作者:
Chi-Hao Chang;Min-Hsiang Hsu;Chang-Jian Weng;Wei-I Hung;T. Chuang;K. Chang;C. Peng;Y. Yen;
Chi-Hao Chang;Min-Hsiang Hsu;Chang-Jian Weng;Wei-I Hung;T. Chuang;K. Chang;C. Peng;Y. Yen;
中科院分区:
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文献类型:
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作者:
Chi-Hao Chang;Min-Hsiang Hsu;Chang-Jian Weng;Wei-I Hung;T. Chuang;K. Chang;C. Peng;Y. Yen;

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更正Chi-Hao Chang等人的“3D生物打印方法制造超疏水性环氧树脂/有机粘土作为具有超疏水性和气体屏障性能协同效应的先进防腐蚀涂层”,杰·板牙。A,2013,1,13869-13877。
Correction for ‘3D-bioprinting approach to fabricate superhydrophobic epoxy/organophilic clay as an advanced anticorrosive coating with the synergistic effect of superhydrophobicity and gas barrier properties’ by Chi-Hao Chang et al., J. Mater. Chem. A, 2013, 1, 13869–13877.