共 93 条
[1]
DRAKE R R, CAZARES L, SEMMES O J., Mining the Low Molecular Weight Proteome of Blood, Proteomics Clinical Applications, 1, 8, pp. 758-768, (2007)
[2]
SIDRANSKY D., Emerging Molecular Markers of Can-cer, Nature Reviews Cancer, 2, 3, pp. 210-219, (2002)
[3]
LIMA A C, MANO J F., Micro-/Nano-Structured Superhy- drophobic Surfaces in the Biomedical Field: Part I: Basic Concepts and Biomimetic Approaches, Nanomedicine, 10, 1, pp. 103-119, (2015)
[4]
LIMA A C, MANO J F., Micro-/Nano-Structured Superhy-drophobic Surfaces in the Biomedical Field: Part I: Basic Concepts and Biomimetic Approaches, Nanomedicine, 10, 1, pp. 103-119, (2015)
[5]
GENTILE F, COLUCCIO M L, LIMONGI T, Et al., The Five Ws (and one H) of Super-Hydrophobic Surfaces in Medicine, Micromachines, 5, 2, pp. 239-262, (2015)
[6]
UEDA E, LEVKIN P A., Emerging Applications of Su-perhydrophilic-Superhydrophobic Micropatterns, Advanced Materials, 25, 9, pp. 1234-1247, (2013)
[7]
OSONOVSKY M, BHUSHAN B., Superhydrophobic Surfaces and Emerging Applications: Non-Adhesion, Energy, Green Engineering, Current Opinion in Colloid & Interface Science, 14, 4, pp. 270-280, (2009)
[8]
LATTHE S S, TERASHIMA C, NAKATA K, Et al., Super-hydrophobic Surfaces Developed by Mimicking Hierarchical Surface Morphology of Lotus Leaf, Molecules, 19, 4, pp. 4256-4283, (2014)
[9]
SHIRTCLIFFE N J, MCHALE G, ATHERTON S, Et al., An Introduction to Superhydrophobicity, Advances in Colloid and Interface Science, 161, 1-2, pp. 124-138, (2010)
[10]
KIJLSTRA J, REIHS K, KLAMT A., Roughness and Topology of Ultra-Hydrophobic Surfaces, Colloids and Surfaces A: Physicochemical and Engineering Aspects, 206, 1-3, pp. 521-529, (2002)