Biodegradable Porous Silicon Barcode Nanowires with Defined Geometry

被引:171
作者
Chiappini, Ciro [3 ]
Liu, Xuewu [1 ]
Fakhoury, Jean Raymond [1 ]
Ferrari, Mauro [1 ,2 ]
机构
[1] Univ Texas Hlth Sci Ctr Houston, Dept Nanomed & Biomed Engn, Houston, TX 77031 USA
[2] Univ Texas MD Anderson Canc Ctr, Dept Expt Therapeut, Houston, TX 77030 USA
[3] Univ Texas Austin, Dept Biomed Engn, Austin, TX 78712 USA
关键词
ELECTRICAL DETECTION; MESOPOROUS SILICON; DELIVERY; PHOTOLUMINESCENCE; FABRICATION; EFFICIENCY; PLATFORM; UNIFORM;
D O I
10.1002/adfm.201000360
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Silicon nanowires are of proven importance in such diverse fields as energy production and storage, flexible electronics, and biomedicine due to the unique characteristics that emerge from their 1D semiconducting nature and their mechanical properties. Here, the synthesis of biodegradable porous silicon barcode nanowires by metal-assisted electroless etching of single-crystal silicon with resistivities ranging from 0.0008 to 10 Omega cm is reported. The geometry of the barcode nanowires is defined by nanolithography and their multicolor reflectance and photoluminescence is characterized. Phase diagrams are developed for the different nanostructures obtained as a function of metal catalyst, H2O2 concentration, ethanol concentration, and silicon resistivity, and a mechanism that explains these observations is proposed. These nanowires are biodegradable, and their degradation time can be modulated by surface treatments.
引用
收藏
页码:2231 / 2239
页数:9
相关论文
共 50 条
[1]   On-wire lithography: synthesis, encoding and biological applications [J].
Banholzer, Matthew J. ;
Qin, Lidong ;
Millstone, Jill E. ;
Osberg, Kyle D. ;
Mirkin, Chad A. .
NATURE PROTOCOLS, 2009, 4 (06) :838-848
[2]   Organic Thin-Film Transistors Fabricated on Resorbable Biomaterial Substrates [J].
Bettinger, Christopher J. ;
Bao, Zhenan .
ADVANCED MATERIALS, 2010, 22 (05) :651-+
[3]   Porous silicon: a quantum sponge structure for silicon based optoelectronics [J].
Bisi, O ;
Ossicini, S ;
Pavesi, L .
SURFACE SCIENCE REPORTS, 2000, 38 (1-3) :1-126
[4]   Silicon nanowires as efficient thermoelectric materials [J].
Boukai, Akram I. ;
Bunimovich, Yuri ;
Tahir-Kheli, Jamil ;
Yu, Jen-Kan ;
Goddard, William A., III ;
Heath, James R. .
NATURE, 2008, 451 (7175) :168-171
[5]   Functionalization of Silicon Nanowires with Actomyrosin Motor Protein for Bioinspired Nanomechanical Applications [J].
Byun, Kyung-Eun ;
Heo, Kwang ;
Shim, Sojung ;
Choi, Heon-Jin ;
Hong, Seunghun .
SMALL, 2009, 5 (23) :2659-2664
[6]  
Canham LT, 2000, PHYS STATUS SOLIDI A, V182, P521, DOI 10.1002/1521-396X(200011)182:1<521::AID-PSSA521>3.0.CO
[7]  
2-7
[8]   Bioactive silicon structure fabrication through nanoetching techniques [J].
Canham, LT .
ADVANCED MATERIALS, 1995, 7 (12) :1033-+
[9]   High-performance lithium battery anodes using silicon nanowires [J].
Chan, Candace K. ;
Peng, Hailin ;
Liu, Gao ;
McIlwrath, Kevin ;
Zhang, Xiao Feng ;
Huggins, Robert A. ;
Cui, Yi .
NATURE NANOTECHNOLOGY, 2008, 3 (01) :31-35
[10]   Silicon nanowires for high-sensitivity glucose detection [J].
Chen, Weiwei ;
Yao, Hui ;
Tzang, Chi Hung ;
Zhu, Junjie ;
Yang, Mengsu ;
Lee, Shuit-Tong .
APPLIED PHYSICS LETTERS, 2006, 88 (21)