All Stories

  1. A Novel Chemical Route to Atomic Layer Deposition of ZnS Thin Film from Diethylzinc and 1,5-Pentanedithiol
  2. Importance of Hydrophilic Pretreatment in the Hydrothermal Growth of Amorphous Molybdenum Sulfide for Hydrogen Evolution Catalysis
  3. High Turnover Frequency of Hydrogen Evolution Reaction on Amorphous MoS2 Thin Film Directly Grown by Atomic Layer Deposition
  4. Highly uniform and vertically aligned SnO2nanochannel arrays for photovoltaic applications
  5. Role of HCl in Atomic Layer Deposition of TiO2 Thin Films from Titanium Tetrachloride and Water
  6. Novel chemical route for atomic layer deposition of MoS2 thin film on SiO2/Si substrate
  7. Observation of localized strains on vertically grown single-walled carbon nanotube forests via polarized Raman spectroscopy
  8. Charge trapping behavior in organic–inorganic alloy films grown by molecular layer deposition from trimethylaluminum, p-phenylenediamine and water
  9. Atomic Layer Deposition of SrTiO3 Thin Films with Highly Enhanced Growth Rate for Ultrahigh Density Capacitors
  10. Botryoidal growth of crystalline ZnO nanoparticles on a forest of single-walled carbon nanotubes by atomic layer deposition
  11. Atomic layer deposited HfO2 and HfO2/TiO2 bi-layer films using a heteroleptic Hf-precursor for logic and memory applications
  12. Shrinking Core Model for Knudsen Diffusion-Limited Atomic Layer Deposition on a Nanoporous Monolith with an Ultrahigh Aspect Ratio
  13. Growth and Characterization of Conducting ZnO Thin Films by Atomic Layer Deposition
  14. Large-scale assembly of ‘type-switchable’ field effect transistors based on carbon nanotubes and nanoparticles
  15. Unusual Growth Behavior of Atomic Layer Deposited PbTiO3 Thin Films Using Water and Ozone As Oxygen Sources and Their Combination
  16. Doping of Carbon Nanotubes Using Low Energy Ion Implantation
  17. Majority Carrier Type Conversion with Floating Gates in Carbon Nanotube Transistors
  18. Nonvolatile Memory: Majority Carrier Type Conversion with Floating Gates in Carbon Nanotube Transistors (Adv. Mater. 47/2009)
  19. Thin film transistors using preferentially grown semiconducting single-walled carbon nanotube networks by water-assisted plasma-enhanced chemical vapor deposition
  20. Direct printing of aligned carbon nanotube patterns for high-performance thin film devices
  21. Unusual transport characteristics of nitrogen-doped single-walled carbon nanotubes
  22. Noise characteristics of single-walled carbon nanotube network transistors
  23. Atomic layer deposition of hafnium oxide from tert-butoxytris(ethylmethylamido)hafnium and ozone: rapid growth, high density and thermal stability
  24. Thin film transistors of single-walled carbon nanotubes grown directly on glass substrates
  25. ZnO nanoparticle growth on single-walled carbon nanotubes by atomic layer deposition and a consequent lifetime elongation of nanotube field emission
  26. Growth and characterization of nitrogen-doped single-walled carbon nanotubes by water-plasma chemical vapour deposition
  27. Atomic Layer Deposition of Bi[sub 1−x−y]Ti[sub x]Si[sub y]O[sub z] Thin Films Using H[sub 2]O Oxidant and Their Characteristics Depending on Si Content
  28. Single-walled carbon nanotube growth on glass
  29. Random network transistors of carbon nanotubes directly grown on glass substrate
  30. Controlling the characteristics of single walled carbon nanotube network transistors by using metal electrodes with different work functions
  31. Synthesis, purification, and integration of carbon nanotube for electronic device application
  32. Direct growth of single-walled carbon nanotubes on conducting ZnO films and its field emission properties
  33. Fabrication and characterization of suspended single-walled carbon nanotubes
  34. Effect of Alumina Addition on Bi-Ti-Al-O Dielectric Thin Films
  35. Characteristics of Amorphous Bi[sub 2]Ti[sub 2]O[sub 7] Thin Films Grown by Atomic Layer Deposition for Memory Capacitor Applications
  36. Fabrication of suspended single-walled carbon nanotubesvia a direct lithographic route
  37. Low Temperature (<100°C) Deposition of Aluminum Oxide Thin Films by ALD with O[sub 3] as Oxidant
  38. Direct photolithographic route to selective growth of single-walled carbon nanotubes using a modified photoresist with ferrocene
  39. Low-Temperature Growth of Single-Walled Carbon Nanotubes by Plasma Enhanced Chemical Vapor Deposition
  40. Low-Temperature Growth of Single-Walled Carbon Nanotubes by Water Plasma Chemical Vapor Deposition
  41. Sulfidative Purification of Carbon Nanotubes Integrated in Transistors
  42. Atomic Layer Deposition of Al2O3 Thin Films from a 1-Methoxy-2-methyl-2-propoxide Complex of Aluminum and Water
  43. Growth Characteristics of Atomic Layer Deposited TiO[sub 2] Thin Films on Ru and Si Electrodes for Memory Capacitor Applications
  44. Atomic Layer Deposition of Bi[sub 1−x−y]Ti[sub x]Si[sub y]O[sub z] Thin Films from Alkoxide Precursors and Water
  45. Amorphous High k Dielectric Bi[sub 1−x−y]Ti[sub x]Si[sub y]O[sub z] Thin Films by ALD
  46. A study on the development of CVD precursors V – syntheses and characterization of new N-alkoxy-β-ketoiminate complexes of titanium
  47. From mono- to poly-nuclear heteroleptic alkaline earth-titanium complexes containing 2,2,6,6-tetramethylheptane-3,5-dionate (thd) and pyrazole (Hpz) or 3,5-dimethylpyrazole (Hpz*) ligands.
  48. Atomic Layer Deposition (ALD) of Bismuth Titanium Oxide Thin Films Using Direct Liquid Injection (DLI) Method
  49. Ruthenium Oxide Nanotube Arrays Fabricated by Atomic Layer Deposition Using a Carbon Nanotube Template
  50. Decomposition behaviors of bis(N-alkoxy-p-ketoiminate) titanium complexes in the depositions of titanium oxide and barium strontium titanate films
  51. Reversible Patterning of Ambient Carbon-Rich Deposits on a Gold Surface by Means of a Voltage-Biased Atomic Force Microscopy
  52. In-Situ Electrical Study of a Reversible Surface Modification and a Nanomachining of Gold Microstrips by the Voltage-Biased Atomic Force Microscope Tip in Air
  53. Preparation of a New SrBi2Ta2O9 (SBT) Chemical Solution Using Crown Ether and its Thin Film Deposition