431599_Print.indd

(nextflipdebug5) #1

  1. Baude PF et al (2003) Pentacene-based radio-frequency identification circuitry. Appl Phys
    Lett 82:3964

  2. Cantatore E et al (2007) A 13.56-MHz RFID system based on organic transponders. IEEE J
    Solid-State Circuits 42:84

  3. Keefer EW, Botterman BR, Romero MI, Rossi AF, Gross GW (2008) Carbon nanotube
    coating improves neuronal recordings. Nat Nanotechnol 3:434

  4. Kim DH et al (2011) Materials for multifunctional balloon catheters with capabilities in
    cardiac electrophysiological mapping and ablation therapy. Nat Mater 10:316

  5. Kim DH et al (2010) Dissolvablefilms of silkfibroin for ultrathin conformal bio-integrated
    electronics. Nat Mater 9:511

  6. Kim DH et al (2011) Epidermal electronics. Science 333:838

  7. Tian B et al (2010) Three-dimensional,flexible nanoscalefield-effect transistors as localized
    bioprobes. Science 329:831

  8. Arns RG (1998) The other transistor: early history of the metal-oxide semiconductor
    field-effect transistor. Eng Sci Educ J 7:233

  9. Vogel EM (2007) Technology and metrology of new electronic materials and devices. Nat
    Nanotechnol 2:25

  10. Meitl MA et al (2006) Transfer printing by kinetic control of adhesion to an elastomeric
    stamp. Nat Mater 5:33

  11. Sun Y, Kim S, Adesida I, Rogers JA (2005) Bendable GaAs metal-semiconductor
    field-effect transistors formed with printed GaAs wire arrays on plastic substrates. Appl Phys
    Lett 87:083501

  12. Murray CB, Kagan CR, Bawendi MG (2000) Synthesis and characterization of monodis-
    perse nanocrystals and close-packed nanocrystal assemblies. Annu Rev Mater Sci 30:545

  13. Puntes VF, Krishnan KM, Alivisatos AP (2001) Colloidal nanocrystal shape and size
    control: the case of cobalt. Science 291:2115

  14. Iijima S (1991) Pentagons, heptagons and negative curvature in graphite microtubule
    growth. Nature 354:56

  15. Morales AM, Lieber CM (1998) A laser ablation method for the synthesis of crystalline
    semiconductor nanowires. Science 279:208

  16. Schreiber F (2000) Structure and growth of self-assembling monolayers. Prog Surf Sci
    65:151

  17. Li XS et al (2009) Large-area synthesis of high-quality and uniform graphenefilms on
    copper foils. Science 324:1312

  18. Kim KS et al (2009) Large-scale pattern growth of graphenefilms for stretchable transparent
    electrodes. Nature 457:706

  19. Whang D, Jin S, Wu Y, Lieber CM (2003) Large-scale hierarchical organization of nanowire
    arrays for integrated nanosystems. Nano Lett 3:1255

  20. Lieber CM (2003) Nanoscale science and technology: building a big future from small
    things. MRS Bull 28:486

  21. Duan XF, Lieber CM (2000) General synthesis of compound semiconductor nanowires. Adv
    Mater 12:298

  22. Cui Y, Duan XF, Hu JT, Lieber CM (2000) Doping and electrical transport in silicon
    nanowires. J Phys Chem B 104:5213

  23. Yang PD et al (2002) Controlled growth of ZnO nanowires and their optical properties. Adv
    Funct Mater 12:323

  24. Hu JT, Ouyang M, Yang PD, Lieber CM (1999) Controlled growth and electrical properties
    of heterojunctions of carbon nanotubes and silicon nanowires. Nature 399:48

  25. Huang Y et al (2001) Logic gates and computation from assembled nanowire building
    blocks. Science 294:1313

  26. Gudiksen MS, Lieber CM (2000) Diameter-selective synthesis of semiconductor nanowires.
    J Am Chem Soc 122:8801

  27. Zheng GF, Lu W, Jin S, Lieber CM (2004) Synthesis and fabrication of high‐performance n‐
    type silicon nanowire transistors. Adv Mater 16:1890


10 1 Introduction

Free download pdf