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Dong Liu

Researcher at Nanjing University of Science and Technology

Publications -  499
Citations -  9899

Dong Liu is an academic researcher from Nanjing University of Science and Technology. The author has contributed to research in topics: Chemistry & Combustion. The author has an hindex of 39, co-authored 412 publications receiving 7618 citations. Previous affiliations of Dong Liu include Indian Ministry of Environment and Forests & Purdue University.

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Energy conversion and ignition of fluffy graphene by flash light

TL;DR: In this paper, the authors showed that fluffy graphene can ignite in a fairly short time upon exposure to a conventional flash light, even in an extremely low temperature environment, which can be attributed to the graphene nanostructure efficiently converting light to heat and causing a large amount of heat to accumulate within a very short flash time.
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Validation of the Analytical Model of Oceanic Lidar Returns: Comparisons with Monte Carlo Simulations and Experimental Results

TL;DR: The model is modified to include refraction at oblique incidence and is then compared with Monte Carlo (MC) simulations and experimental results, demonstrating the validity of the analytical model in the simulation of oceanic lidar signals.
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On the effects of hydrogen addition in premixed formaldehyde flames

TL;DR: In this article, the influence of hydrogen addition on laminar premixed fuel-rich formaldehyde flames at the atmospheric pressure is studied by the detailed kinetic analysis, and the results show that the H2 chemical effects can promote the oxidation of formaldehyde and make the mole fraction profile of Formaldehyde move toward the upstream side.
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Determination of Planetary Boundary Layer height with Lidar Signals Using Maximum Limited Height Initialization and Range Restriction (MLHI-RR)

TL;DR: A new technique of maximum limited height initialization and range restriction (MLHI-RR) is proposed to eliminate the impact of multi-layer conditions on PBLH determination and demonstrates that the proposed technique can determine the P BLH in multi- layer conditions with higher accuracy.
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Microfluidic Pumping Based on Traveling-Wave Dielectrophoresis

TL;DR: In this paper, a traveling-wave dielectrophoresis (twDEP) of microparticles is used to induce strong electromechanical effects in the fluid using integrated microelectrodes.