• DFT Calculation of Carbon-Doped TiO2 Nanocomposites 

      Gustavsen, Kim Robert; Feng, Tao; Huang, Hao; Li, Gang; Narkiewicz, Urszula; Wang, Kaiying (Peer reviewed; Journal article, 2023)
      Titanium dioxide (TiO2) has been proven to be an excellent material for mitigating the continuous impact of elevated carbon dioxide concentrations. Carbon doping has emerged as a promising strategy to enhance the CO2 ...
    • Improved Crystallinity of Annealed 0002 AlN Films on Sapphire Substrate 

      Comis Bersch, Bruno; Caminal Ros, Tomàs; Tollefsen, Vegard; Johannessen, Erik Andrew; Johannessen, Agne (Peer reviewed; Journal article, 2023)
      AlN is a piezoelectric material used in telecommunication applications due to its high surface acoustic wave (SAW) velocity, stability, and mechanical strength. Its performance is linked to film quality, and one method to ...
    • Integration of Carbon Nanotubes in Microsystems: Local Growth and Electrical Properties of Contacts 

      Haugen, Tormod Bjørnetun; Ta, Bao Quoc; Halvorsen, Einar; Hoivik, Nils; Aasmundtveit, Knut (Journal article; Peer reviewed, 2013)
      Carbon nanotubes (CNTs) have been directly grown onto a silicon microsystem by a local synthesis method. This method has potential for wafer-level complimentary metal-oxide-semiconductor (CMOS) transistor-compatible ...
    • Local Synthesis of Carbon Nanotubes in Silicon Microsystems: The Effect of Temperature Distribution on Growth Structure 

      Ta, Bao Quoc; Haugen, Tormod Bjørnetun; Hoivik, Nils; Halvorsen, Einar; Aasmundtveit, Knut (Journal article; Peer reviewed, 2013)
      Local synthesis and direct integration of carbon nanotubes (CNTs) into microsystems is a promising method for producing CNT-based devices in a single step, low-cost, and wafer-level, CMOS/MEMS-compatible process. In this ...
    • Tailoring Cu nanoparticle catalyst for methanol synthesis using the spinning disk reactor 

      Ahoba-Sam, Christian; Boodhoo, Kamelia V.K.; Olsbye, Unni; Jens, Klaus-Joachim (Journal article; Peer reviewed, 2018)
      Cu nanoparticles are known to be very active for methanol (MeOH) synthesis at relatively low temperatures, such that smaller particle sizes yield better MeOH productivity. We aimed to control Cu nanoparticle (NP) size and ...