45 citations · 51 across the 9 of their papers we have counts for
8 papers · 1 filter
The synergistic modulation of electronic and geometry structures leads to ultra-low thermal conductivity of graphene-like borides (g-B3X5, X=N, P, As)
Linfeng Yu, Jinyuan Xu, Chen Shen +6
The design of novel devices with specific technical interests through modulating structural properties and bonding characteristics promotes the vigorous development of materials in…
Anisotropy of thermal transport in phosphorene: A comparative first-principles study using different exchange-correlation functional
Fa Zhang, Xiong Zheng, Huimin Wang +2
With the increasing applications of Phosphorene in nano/optoelectronics and thermoelectrics, a comprehensive study on its thermal transport properties is necessary. It has been con…
Anomalously low thermal conductivity of two-dimensional GaP monolayers: A comparative study of the group GaX (X = N, P, As)
Chen Shen, Niloofar Hadaeghi, Harish K. Singh +4
With the successful synthesis of the two-dimensional (2D) gallium nitride (GaN) in a planar honeycomb structure, the phonon transport properties of 2D GaN have been reported. Howev…
Exploring T-carbon for Energy Applications
Guangzhao Qin, Kuan-Rong Hao, Qing-Bo Yan +2
Seeking for next-generation energy sources that are economic, sustainable (renewable), clean (environment-friendly), and abundant in earth is crucial when facing the challenges of…
Activated lone-pair electrons lead to low lattice thermal conductivity: a case study of boron arsenide
Guangzhao Qin, Zhenzhen Qin, Huimin Wang +1
Reducing thermal conductivity () is an efficient way to boost the thermoelectric performance to achieve direct solid-state conversion to electrical power from thermal energy, wh…
Anomalous thermal transport behavior in graphene-like carbon nitride (CN)
Guangzhao Qin, Zhenzhen Qin, Huimin Wang +2
New classes 2D carbon-based materials beyond graphene have been intensively studied for their promising applications in nano-/opto-/spin-electronics, catalysis, sensors, clean ener…