“…Zhang has studied extensively the piezoelectric properties of BNHC, 20 while a very recent publication exhibited the mechanically and dynamically stable characteristics of several three-dimensional boron nitride nanoribbons. 21 Concerning the 3D BN counterpart, it also performs well in many elds and a number of studies have been reported. For example, Dai et al have reported in 2013 that the microporous BN structure entails large surface area more than 3000 m 2 g À1 and showed a preference toward organic molecule adsorption (such as ethanol molecules) compared to water molecules.…”
Section: Introductionmentioning
confidence: 98%
“…Zhang has studied extensively the piezoelectric properties of BNHC, 20 while a very recent publication exhibited the mechanically and dynamically stable characteristics of several three-dimensional boron nitride nanoribbons. 21 …”
Thermal conductivity of the 3D h-BN honeycomb structure increases by 7.2 times under strain compared to an increase of only 0.67 times in the strained 3D graphene counterpart, differing from behaviors of traditional bulk diamond or silicon.
“…Zhang has studied extensively the piezoelectric properties of BNHC, 20 while a very recent publication exhibited the mechanically and dynamically stable characteristics of several three-dimensional boron nitride nanoribbons. 21 Concerning the 3D BN counterpart, it also performs well in many elds and a number of studies have been reported. For example, Dai et al have reported in 2013 that the microporous BN structure entails large surface area more than 3000 m 2 g À1 and showed a preference toward organic molecule adsorption (such as ethanol molecules) compared to water molecules.…”
Section: Introductionmentioning
confidence: 98%
“…Zhang has studied extensively the piezoelectric properties of BNHC, 20 while a very recent publication exhibited the mechanically and dynamically stable characteristics of several three-dimensional boron nitride nanoribbons. 21 …”
Thermal conductivity of the 3D h-BN honeycomb structure increases by 7.2 times under strain compared to an increase of only 0.67 times in the strained 3D graphene counterpart, differing from behaviors of traditional bulk diamond or silicon.
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