Bibliography
Xu, S., Zhang, Y., Cho, J., Lee, J., Huang, X., Jia, L., Fan, J. A., Su, Y., Su, J., Zhang, H., Cheng, H., Lu, B., Yu, C., Chuang, C., Kim, T., Song, T., Shigeta, K., Kang, S., Dagdeviren, C., ⦠Rogers, J. A. (2013). Stretchable batteries with self-similar serpentine interconnects and integrated wireless recharging systems. Nature Communications, 4(1).
Authors
24
- Sheng Xu (first)
- Yihui Zhang (additional)
- Jiung Cho (additional)
- Juhwan Lee (additional)
- Xian Huang (additional)
- Lin Jia (additional)
- Jonathan A. Fan (additional)
- Yewang Su (additional)
- Jessica Su (additional)
- Huigang Zhang (additional)
- Huanyu Cheng (additional)
- Bingwei Lu (additional)
- Cunjiang Yu (additional)
- Chi Chuang (additional)
- Tae-il Kim (additional)
- Taeseup Song (additional)
- Kazuyo Shigeta (additional)
- Sen Kang (additional)
- Canan Dagdeviren (additional)
- Ivan Petrov (additional)
- Paul V. Braun (additional)
- Yonggang Huang (additional)
- Ungyu Paik (additional)
- John A. Rogers (additional)
References
34
Referenced
1,275
-
Pelrine, R., Kornbluh, R., Pei, Q. B. & Joseph, J. . High-speed electrically actuated elastomers with strain greater than 100%. Science 287, 836–839 (2000) .
(
10.1126/science.287.5454.836
) / Science by R Pelrine (2000) -
Wagner, S. et al. Electronic skin: architecture and components. Physica E 25, 326–334 (2004) .
(
10.1016/j.physe.2004.06.032
) / Physica E by S Wagner (2004) -
Khang, D. Y., Jiang, H. Q., Huang, Y. & Rogers, J. A. . A stretchable form of single-crystal silicon for high-performance electronics on rubber substrates. Science 311, 208–212 (2006) .
(
10.1126/science.1121401
) / Science by DY Khang (2006) -
Sekitani, T. et al. A rubberlike stretchable active matrix using elastic conductors. Science 321, 1468–1472 (2008) .
(
10.1126/science.1160309
) / Science by T Sekitani (2008) -
Sekitani, T. & Someya, T. . Stretchable organic integrated circuits for large-area electronic skin surfaces. MRS Bull. 37, 236–245 (2012) .
(
10.1557/mrs.2012.42
) / MRS Bull. by T Sekitani (2012) -
Suo, Z. G. . Mechanics of stretchable electronics and soft machines. MRS Bull. 37, 218–225 (2012) .
(
10.1557/mrs.2012.32
) / MRS Bull. by ZG Suo (2012) -
Yoon, J. et al. Ultrathin silicon solar microcells for semitransparent, mechanically flexible and microconcentrator module designs. Nat. Mater. 7, 907–915 (2008) .
(
10.1038/nmat2287
) / Nat. Mater. by J Yoon (2008) -
Kim, D. H. et al. Epidermal electronics. Science 333, 838–843 (2011) .
(
10.1126/science.1206157
) / Science by DH Kim (2011) -
Mannsfeld, S. C. B. et al. Highly sensitive flexible pressure sensors with microstructured rubber dielectric layers. Nat. Mater. 9, 859–864 (2010) .
(
10.1038/nmat2834
) / Nat. Mater. by SCB Mannsfeld (2010) -
Takei, K. et al. Nanowire active-matrix circuitry for low-voltage macroscale artificial skin. Nat Mater. 9, 821–826 (2010) .
(
10.1038/nmat2835
) / Nat Mater. by K Takei (2010) -
Someya, T. et al. A large-area, flexible pressure sensor matrix with organic field-effect transistors for artificial skin applications. Proc. Natl Acad. Sci. USA 101, 9966–9970 (2004) .
(
10.1073/pnas.0401918101
) / Proc. Natl Acad. Sci. USA by T Someya (2004) -
Kim, D. H. et al. Materials for multifunctional balloon catheters with capabilities in cardiac electrophysiological mapping and ablation therapy. Nat. Mater. 10, 316–323 (2011) .
(
10.1038/nmat2971
) / Nat. Mater. by DH Kim (2011) -
Ko, H. C. et al. A hemispherical electronic eye camera based on compressible silicon optoelectronics. Nature 454, 748–753 (2008) .
(
10.1038/nature07113
) / Nature by HC Ko (2008) -
Nishide, H. & Oyaizu, K. . Toward flexible batteries. Science 319, 737–738 (2008) .
(
10.1126/science.1151831
) / Science by H Nishide (2008) -
Pushparaj, V. L. et al. Flexible energy storage devices based on nanocomposite paper. Proc. Natl Acad. Sci. USA 104, 13574–13577 (2007) .
(
10.1073/pnas.0706508104
) / Proc. Natl Acad. Sci. USA by VL Pushparaj (2007) -
Scrosati, B. . Nanomaterials - paper powers battery breakthrough. Nat. Nanotech. 2, 598–599 (2007) .
(
10.1038/nnano.2007.318
) / Nat. Nanotech. by B Scrosati (2007) -
Hu, L. B. et al. Highly conductive paper for energy-storage devices. Proc. Natl Acad. Sci. USA 106, 21490–21494 (2009) .
(
10.1073/pnas.0908858106
) / Proc. Natl Acad. Sci. USA by LB Hu (2009) -
Hu, L., Wu, H., La Mantia, F., Yang, Y. & Cui, Y. . Thin, flexible secondary Li-ion paper batteries. ACS Nano. 4, 5843–5848 (2010) .
(
10.1021/nn1018158
) / ACS Nano. by L Hu (2010) -
Yu, C. J., Masarapu, C., Rong, J. P., Wei, B. Q. & Jiang, H. Q. . Stretchable supercapacitors based on buckled single-walled carbon nanotube macrofilms. Adv. Mater. 21, 4793–4797 (2009) .
(
10.1002/adma.200901775
) / Adv. Mater. by CJ Yu (2009) -
Hu, L. B. et al. Stretchable, porous, and conductive energy textiles. Nano Lett. 10, 708–714 (2010) .
(
10.1021/nl903949m
) / Nano Lett. by LB Hu (2010) -
Kaltenbrunner, M., Kettlgruber, G., Siket, C., Schwodiauer, R. & Bauer, S. . Arrays of ultracompliant electrochemical dry gel cells for stretchable electronics. Adv. Mater. 22, 2065–2067 (2010) .
(
10.1002/adma.200904068
) / Adv. Mater. by M Kaltenbrunner (2010) -
Gaikwad, A. M. et al. Highly stretchable alkaline batteries based on an embedded conductive fabric. Adv. Mater. 24, 5071–5076 (2012) .
(
10.1002/adma.201201329
) / Adv. Mater. by AM Gaikwad (2012) -
Tarascon, J. M. & Armand, M. . Issues and challenges facing rechargeable lithium batteries. Nature 414, 359–367 (2001) .
(
10.1038/35104644
) / Nature by JM Tarascon (2001) -
Scrosati, B. & Garche, J. . Lithium batteries: status, prospects and future. J. Power Sources 195, 2419–2430 (2010) .
(
10.1016/j.jpowsour.2009.11.048
) / J. Power Sources by B Scrosati (2010) -
Thanawala, S. K. & Chaudhury, M. K. . Surface modification of silicone elastomer using perfluorinated ether. Langmuir 16, 1256–1260 (2000) .
(
10.1021/la9906626
) / Langmuir by SK Thanawala (2000) -
Lee, J. et al. Stretchable gaas photovoltaics with designs that enable high areal coverage. Adv. Mater. 23, 986–991 (2011) .
(
10.1002/adma.201003961
) / Adv. Mater. by J Lee (2011) -
Lee, J. et al. Stretchable semiconductor technologies with high areal coverages and strain-limiting behavior: demonstration in high-efficiency dual-junction GaInP/GaAs photovoltaics. Small 8, 1851–1856 (2012) .
(
10.1002/smll.201102437
) / Small by J Lee (2012) -
Krieger, K. . Extreme mechanics: buckling down. Nature 488, 146–147 (2012) .
(
10.1038/488146a
) / Nature by K Krieger (2012) -
Yoshima, K., Munakata, H. & Kanamura, K. . Fabrication of micro lithium-ion battery with 3D anode and 3D cathode by using polymer wall. J. Power Sources 208, 404–408 (2012) .
(
10.1016/j.jpowsour.2012.02.045
) / J. Power Sources by K Yoshima (2012) -
Ferg, E., Gummow, R. J., Dekock, A. & Thackeray, M. M. . Spinel anodes for lithium-ion batteries. J. Electrochem. Soc. 141, L147–L150 (1994) .
(
10.1149/1.2059324
) / J. Electrochem. Soc. by E Ferg (1994) -
Owen, J. R. . Rechargeable lithium batteries. Chem. Soc. Rev. 26, 259–267 (1997) .
(
10.1039/cs9972600259
) / Chem. Soc. Rev. by JR Owen (1997) -
Gowda, S. R. et al. Conformal Coating of thin polymer electrolyte layer on nanostructured electrode materials for three-dimensional battery applications. Nano. Lett. 11, 101–106 (2011) .
(
10.1021/nl102919m
) / Nano. Lett. by SR Gowda (2011) -
Sun, Y. G., Choi, W. M., Jiang, H. Q., Huang, Y. G. Y. & Rogers, J. A. . Controlled buckling of semiconductor nanoribbons for stretchable electronics. Nat. Nanotech. 1, 201–207 (2006) .
(
10.1038/nnano.2006.131
) / Nat. Nanotech. by YG Sun (2006) -
Ouyang, M., Yuan, C., Muisener, R. J., Boulares, A. & Koberstein, J. T. . Conversion of some siloxane polymers to silicon oxide by UV/ozone photochemical processes. Chem. Mater. 12, 1591–1596 (2000) .
(
10.1021/cm990770d
) / Chem. Mater. by M Ouyang (2000)
Dates
Type | When |
---|---|
Created | 12 years, 5 months ago (Feb. 26, 2013, 5:19 a.m.) |
Deposited | 2 years, 7 months ago (Jan. 5, 2023, 9:05 p.m.) |
Indexed | 23 hours, 4 minutes ago (Aug. 23, 2025, 1:08 a.m.) |
Issued | 12 years, 5 months ago (Feb. 26, 2013) |
Published | 12 years, 5 months ago (Feb. 26, 2013) |
Published Online | 12 years, 5 months ago (Feb. 26, 2013) |
@article{Xu_2013, title={Stretchable batteries with self-similar serpentine interconnects and integrated wireless recharging systems}, volume={4}, ISSN={2041-1723}, url={http://dx.doi.org/10.1038/ncomms2553}, DOI={10.1038/ncomms2553}, number={1}, journal={Nature Communications}, publisher={Springer Science and Business Media LLC}, author={Xu, Sheng and Zhang, Yihui and Cho, Jiung and Lee, Juhwan and Huang, Xian and Jia, Lin and Fan, Jonathan A. and Su, Yewang and Su, Jessica and Zhang, Huigang and Cheng, Huanyu and Lu, Bingwei and Yu, Cunjiang and Chuang, Chi and Kim, Tae-il and Song, Taeseup and Shigeta, Kazuyo and Kang, Sen and Dagdeviren, Canan and Petrov, Ivan and Braun, Paul V. and Huang, Yonggang and Paik, Ungyu and Rogers, John A.}, year={2013}, month=feb }