Journal of Inorganic Materials, Volume. 39, Issue 8, 879(2024)
[1] S BHOWMICK, S SHIRZADIAN, A T ALPAS. High-temperature tribological behavior of Ti containing diamond-like carbon coatings with emphasis on running-in coefficient of friction. Surface and Coatings Technology(2022).
[2] J EPELOA, C E REPETTO, B J GÓMEZ et al. Resistivity humidity sensors based on hydrogenated amorphous carbon films. Materials Research Express(2019).
[3] N ASLAN, M Ş KURT, KOÇ M MEHMET. Morpho-structural and optoelectronic properties of diamond like carbon-germanium (DLC-Ge) composite thin films produced by magnetron sputtering. Optical Materials(2022).
[4] Š MEŠKINIS, R GUDAITIS, A VASILIAUSKAS et al. Piezoresistive properties of diamond like carbon films containing copper. Diamond and Related Materials(2015).
[5] T TAKENO, H MIKI, T SUGAWARA et al. A DLC/W-DLC multilayered structure for strain sensing applications. Diamond and Related Materials(2008).
[6] R KOPPERT, D GOETTEL, O FREITAG-WEBER et al. Nickel containing diamond like carbon thin films. Solid State Sciences(2009).
[7] Š N MEŠKINIS, R GUDAITIS, K ŠLAPIKAS et al. Giant negative piezoresistive effect in diamond-like carbon and diamond-like carbon-based nickel nanocomposite films deposited by reactive magnetron sputtering of Ni target. ACS Applied Materials & Interfaces(2018).
[8] Š MEŠKINIS, A VASILIAUSKAS, K ŠLAPIKAS et al. Bias effects on structure and piezoresistive properties of DLC:Ag thin films. Surface and Coatings Technology(2014).
[9] S TAMULEVIČIUS, Š MEŠKINIS, K ŠLAPIKAS et al. Piezoresistive properties of amorphous carbon based nanocomposite thin films deposited by plasma assisted methods. Thin Solid Films(2013).
[10] R GUDAITIS, Š MEŠKINIS, K ŠLAPIKAS et al. Piezoresistive and electrical properties of Cr containing diamond-like carbon films. Surface and Coatings Technology(2012).
[11] G LEAL, G W A CARDOSO, S S A SOBRINHO et al. Electrical and structural characterization of Sn-DLC thin films for piezoresistive sensors. Procedia Engineering(2014).
[12] A TIBREWALA, E PEINER, R BANDORF et al. Longitudinal and transversal piezoresistive effect in hydrogenated amorphous carbon films. Thin Solid Films(2007).
[13] R KOPPERT, S UHLIG, H SCHMID-ENGEL et al. Structural and physical properties of highly piezoresistive nickel containing hydrogenated carbon thin films. Diamond and Related Materials(2012).
[14] C YAN, P GUO, J ZHOU et al. Dependence of piezoresistive behavior upon Cu content in Cu-DLC nanocomposite films. Diamond and Related Materials(2023).
[15] X LI, D ZHANG, K R LEE et al. Effect of metal doping on structural characteristics of amorphous carbon system: a first- principles study. Thin Solid Films(2016).
[16] Y J JO, T F ZHANG, M J SON et al. Synthesis and electrochemical properties of Ti-doped DLC films by a hybrid PVD/PECVD process. Applied Surface Science(2018).
[17] Y L HE, X H WU, H Y LIN et al. Structure characteristics and piezoresistive effect of nc-Si:H films. Chinese Science Bulletin(1995).
[18] M PETERSEN, U HECKMANN, R BANDORF et al. Me-DLC films as material for highly sensitive temperature compensated strain gauges. Diamond and Related Materials(2011).
[19] P W ANDERSON. Absence of diffusion in certain random lattices. Physical Review(1958).
[20] C WAN, X ZHANG, J VANACKEN et al. Electro- and magneto- transport properties of amorphous carbon films doped with iron. Diamond and Related Materials(2011).
[21] D TOKER, D AZULAY, N SHIMONI et al. Tunneling and percolation in metal-insulator composite materials. Physical Review B(2003).
[22] C GRIMALDI. Theory of percolation and tunneling regimes in nanogranular metal films. Physical Review B(2014).
[23] C GRIMALDI, P RYSER, S STRÄSSLER. Gauge factor enhancement driven by heterogeneity in thick-film resistors. Journal of Applied Physics(2001).
[24] A ZAHAB, L SPINA, P PONCHARAL et al. Water-vapor effect on the electrical conductivity of a single-walled carbon nanotube mat.. Physical Review B(2000).
[25] X FAN, K ELGAMMAL, A D SMITH et al. Humidity and CO2 gas sensing properties of double-layer graphene. Carbon(2018).
[26] H FARAHANI, R WAGIRAN, M N HAMIDON. Humidity sensors principle, mechanism, and fabrication technologies: a comprehensive review. Sensors(2014).
[27] X L GAO, X Z ZHANG, C H WAN et al. Abnormal humidity-dependent electrical properties of amorphous carbon/silicon heterojunctions. Applied Physics Letters, 212101(2010).
Get Citation
Copy Citation Text
Zhihan ZHAO, Peng GUO, Jing WEI, Li CUI, Shanze LIU, Wenlong ZHANG, Rende CHEN, Aiying WANG.
Category:
Received: Jan. 3, 2024
Accepted: --
Published Online: Dec. 12, 2024
The Author Email: WANG Aiying (aywang@nimte.ac.cn)