[1] c. wu, a. deshmukh, o. yassin, z. li, a. alamri, j. vellek, p. zhou, m. sotzing, g. sotzing, y. cao, “flexible cyclic-olefin with enhanced dipolar relaxation for harsh condition electrification”. proceedings of national academy of sciences (pnas), us. vol. 118, no. 45, pp. e2115367118, 2021.
[2] c. wu, a. a. deshmukh, z. li, l. chen, a. alamri, y. wang, r. ramprasad, g. a. sotzing, y. cao, “flexible temperature-invariant polymer dielectrics with large bandgap”, advanced materials, vol. 32, pp. 2000499, 2020.
[3] a. deshmukh, c. wu, o. yassin, a. mishra, l. chen, a. alamri, z. li, j. zhou, z. mutlu, m. sotzing, p. rajak, s. shukla, j. vellek, p. vashishta, m. cakmak, r. ramprasad, y. cao, g. sotzing, “flexible polyolefin dielectric by strategic design of organic modules for harsh condition electrification”. energy & environmental science, doi: 10.1039/d1ee02630e, 2022.(共同一作)
[4] b. zhang, j. liu, m. ren, c. wu, t. moran, s. zeng, s.e. chavez, z. hou, z. li, a. m. lachance, t. r. jow, b.d. huey, y. cao, l. sun, “reviving the schottky barrier for flexible polymer dielectrics with a superior 2d nano-assembly coating”. advanced materials, vol. 33, pp. 2101374, 2021.(共同一作)
[5] c. wu, l. chen, a. deshmukh, d. kamal, z. li, p. shetty, j. zhou, h. sahu, h. tran, g. sotzing, r. ramprasad, y. cao, “dielectric polymers tolerant to electric field and temperature extremes: integration of phenomenology, informatics, and experimental validation”, acs applied materials & interfaces, vol. 13, pp. 53416-53424, 2021.
[6] c. wu, a.a. deshmukh, l. chen, r. ramprasad, g.a. sotzing, y. cao, “rational design of all-organic flexible high-temperature polymer dielectrics”. matter, 5(9), pp.2615-2623, 2022.
[7] c. wu, x. liang, l. a. dissado, n. m. chalashkanov, s. j. dodd, y. gao, s. xu, “dielectric response of nano aluminium tri-hydrate filled silicone rubber”. composites science and technology, 163, pp. 56-62, 2018.
[8] c. wu, z. li, g. m. treich, m. tefferi, r. casalini, r. ramprasad, g. a. sotzing, y. cao, “dipole-relaxation dynamics in a modified polythiourea with high dielectric constant for energy storage applications”, appl. phys. lett., 115, pp. 163901, 2019.
[9] q. wang, c. wu, a.m. lachance, j. zhou, y. gao, y. zhang, l. sun, y. cao, x. liang, “interfacial polarization suppression of p (vdf-hfp) film through 2d montmorillonite nanosheets coating”. progress in organic coatings, 172, p.107119, 2022.
[10] c. wu, a.m. lachance, m.a. baferani, k. shen, z. li, z. hou, n. wang, y. wang, l. sun, y. cao, “scalable self-assembly interfacial engineering for high-temperature dielectric energy storage”. iscience, 25(7), p.104601, 2022.
[11] q. wang, w. bao, y. gao, s. liu, z. zuo, c. wu, x. liang, “influence of surface discharge on resin degradation in decay-like fracture of composite insulators”. polymers, vol. 15, no. 4, p. 790, 2023.
[12] c. wu, l.a. dissado, y. gao, q. wang, y. liu, y. cao, x. liang, “dielectric response—a nondestructive approach to probing the micro‐interface of aluminium hydroxide filled silicone rubber composites for outdoor insulation”. high voltage, 2023.
[13] c. wu, a. a. deshmukh, z. li, l. chen, a. alamri, y. wang, r. ramprasad, g. a. sotzing, y. cao, “remarks on the design of flexible high-temperature polymer dielectrics for emerging grand electrification - exemplified by poly(oxa)norbornenes”. ieee trans. dielectr. electr. insul., vol. 28, pp. 1468-1470, 2021.
[14] c. wu, m. a. baferani, j. ronzello, y. cao, “charge transport dynamics and space charge accumulation in xlpe composites with 2d platelet fillers for hvdc cable insulation”. ieee trans. dielectr. electr. insul., vol. 28, pp. 3-10, 2021.
[15] c. wu, x. liang, s. xu, s. li, y. gao, y. liu, “effect of alumina tri-hydrate surface modification on liquid permeation and electrical performance of silicone rubber”. ieee trans. dielectr. electr. insul., 24(1): 543-551, 2017.
[16] c. wu, y. gao, x. liang, s. m. gubanski, q. wang, w. bao, s. li, “manifestation of interactions of nano-silica in silicone rubber investigated by low-frequency dielectric spectroscopy and mechanical tests”, polymers, 11, pp.717, 2019.
[17] q. wang, x. liang, c. wu, n. wang, s. liu, z. zuo, y. gao, “temperature dependence and correlation of polarization processes in p(vdf-hfp) films”, polymer, 229, 124016, 2021.
[18] alamri, c. wu, a. mishra, l. chen, z. li, a. deshmukh, j. zhou, o. yassin, r. ramprasad, p. vashishta, y. cao & g. sotzing. “improving the rotational freedom of polyetherimide: enhancement of the dielectric properties of a commodity high-temperature polymer using a structural defect”. chemistry of materials, 34(14), pp.6553-6558, 2022.
[19] alamri, c. wu, s. nasreen, y. cao, g. sotzing, “high dielectric constant and high breakdown strength polyimide via tin complexation of the polyamide acid precursor”. rsc advances, doi: 10.1039/d1ra06302b, 2022.
[20] s. m. fica-contreras, z. li, a. alamri, a. p. charnay, j. pan, c. wu, j. r. lockwood, o. yassin, s. shukla, g. sotzing, y. cao, m. d. fayer, “synthetically tunable polymers, free volume element size distributions, and dielectric breakdown field strengths”. materials today, 2023.