作者
Yusilawati Ahmad Nor, Yuting Niu, Surajit Karmakar, Liang Zhou, Chun Xu, Jun Zhang, Hongwei Zhang, Meihua Yu, Donna Mahony, Neena Mitter, Matthew A Cooper, Chengzhong Yu
发表日期
2015/9/23
期刊
ACS central science
卷号
1
期号
6
页码范围
328-334
出版商
American Chemical Society
简介
Inspired by the lotus effect in nature, surface roughness engineering has led to novel materials and applications in many fields. Despite the rapid progress in superhydrophobic and superoleophobic materials, this concept of Mother Nature’s choice is yet to be applied in the design of advanced nanocarriers for drug delivery. Pioneering work has emerged in the development of nanoparticles with rough surfaces for gene delivery; however, the preparation of nanoparticles with hydrophilic compositions but with enhanced hydrophobic property at the nanoscale level employing surface topology engineering remains a challenge. Herein we report for the first time the unique properties of mesoporous hollow silica (MHS) nanospheres with controlled surface roughness. Compared to MHS with a smooth surface, rough mesoporous hollow silica (RMHS) nanoparticles with the same hydrophilic composition show unusual …
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