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Discovery Projects - Grant ID: DP140103137

Title
Discovery Projects - Grant ID: DP140103137
Funding
ARC | Discovery Projects
Contract (GA) number
DP140103137
Start Date
2014/01/01
End Date
2016/12/31
Open Access mandate
no
Organizations
-
More information
http://purl.org/au-research/grants/arc/DP140103137

 

  • Robust rotation of rotor in a thermally driven nanomotor

    Cai, Kun; Yu, Jingzhou; Shi, Jiao; Qin, Qing-Hua (2017)
    Projects: ARC | Discovery Projects - Grant ID: DP140103137 (DP140103137)
    In the fabrication of a thermally driven rotary nanomotor with the dimension of a few nanometers, fabrication and control precision may have great influence on rotor’s stability of rotational frequency (SRF). To investigate effects of uncertainty of some major factors including temperature, tube length, axial distance between tubes, diameter of tubes and the inward radial deviation (IRD) of atoms in stators on the frequency’s stability, theoretical analysis integrating with numerical experime...

    Effects of size and surface on the auxetic behaviour of monolayer graphene kirigami

    Cai, Kun; Luo, Jing; Ling, Yiru; Wan, Jing; Qin, Qing-hua (2016)
    Projects: ARC | Discovery Projects - Grant ID: DP140103137 (DP140103137)
    Graphene is an active element used in the design of nano-electro-mechanical systems (NEMS) owing to its excellent in-plane physical properties on mechanical, electric and thermal aspects. Considering a component requiring negative Poisson’s ratio in NEMS, a graphene kirigami (GK) containing periodic re-entrant honeycombs is a natural option. This study demonstrates that a GK with specific auxetic property can be obtained by adjusting the sizes of its honeycombs. Using molecular dynamics exper...

    A method for measuring rotation of a thermal carbon nanomotor using centrifugal effect

    Cai, Kun; Yu, Jingzhou; Shi, Jiao; Qin, Qing H. (2016)
    Projects: ARC | Discovery Projects - Grant ID: DP140103137 (DP140103137)
    A thermal nanomotor is relatively easy to fabricate and regulate as it contains just a few or even no accessory devices. Since the double-wall carbon nanotube (CNT)-based rotary nanomotor was established in a thermostat, assessment of the rotation of the rotor (inner tube) in the stator (outer tube) of the nanomotor has been critical, but remains challenging due to two factors: the small size of the rotor (only a few nanometers) and the high rotational frequency (»1 GHz). To measure the rotat...
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