B
Boyi Hao
Researcher at Michigan Technological University
Publications - 17
Citations - 400
Boyi Hao is an academic researcher from Michigan Technological University. The author has contributed to research in topics: Boron nitride & Quantum dot. The author has an hindex of 7, co-authored 14 publications receiving 288 citations.
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Formation of nanodiamonds at near-ambient conditions via microplasma dissociation of ethanol vapour
TL;DR: It is shown that nanodiamonds can be stably formed in the gas phase at atmospheric pressure and neutral gas temperatures <100 °C by dissociation of ethanol vapour in a novel microplasma process that allows in flight purification by selective etching of the non-diamond carbon and stabilization of the nanod diamonds.
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Room‐Temperature Tunneling Behavior of Boron Nitride Nanotubes Functionalized with Gold Quantum Dots
Chee Huei Lee,Shengyong Qin,Madhusudan A. Savaikar,Jiesheng Wang,Boyi Hao,Dongyan Zhang,Douglas Banyai,John A. Jaszczak,Kendal Clark,Juan Carlos Idrobo,An-Ping Li,Yoke Khin Yap +11 more
TL;DR: It is demonstrated that tunneling currents can be modulated at room temperature by tuning the lengths of QD-BNNTs and the gate potentials.
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Electrophoretically‐Deposited Metal‐Decorated CNT Nanoforests with High Thermal/Electric Conductivity and Wettability Tunable from Hydrophilic to Superhydrophobic
TL;DR: In this article, a single-step, room-temperature, and scalable electrophoretic deposition process is reported to form nanocomposites on any electrically conductive surface with metal nanoparticle decorated carbon nanotubes (CNTs).
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Corrigendum: Formation of nanodiamonds at near-ambient conditions via microplasma dissociation of ethanol vapour
TL;DR: Corrigendum: Formation of nanodiamonds at near-ambient conditions via microplasma dissociation of ethanol vapour using nanofiltration of Na6(CO3)(SO4)SO4 with high purity at low temperatures via microPLASM dissociation.
Journal ArticleDOI
Switching Behaviors of Graphene-Boron Nitride Nanotube Heterojunctions.
Vyom Parashar,Corentin Durand,Boyi Hao,Rodrigo G. Amorim,Ravindra Pandey,Bishnu Tiwari,Dongyan Zhang,Yang Liu,An-Ping Li,Yoke Khin Yap +9 more
TL;DR: It is shown that the growth of electrically insulating BNNTs on graphene can enable the use of graphene as effective digital switches.