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17. He, Q., Wu, Y. F., Feng, Z. P., Fan, W. J., Lin, Z. W., Sun, C. C., Zhou, Z. H., Meng, K. Y., Wu, W. Z., Yang, J.,  ‘An all-textile triboelectric sensor for wearable teleoperated human–machine interaction’ J. Mater. Chem. A, 2019, 7, 26804-26811.

16. Si, M. W., Saha, A. K., Gao, S. J., Qiu, G., Qin, J. K., Duan, Y. Q., Jian, J., Niu, C., Wang, H. Y., Wu, W. Z., Gupta, S. K., Ye, P. D., ‘A ferroelectric semiconductor field-effect transistor’ Nature Electronics, 2019, 2, 580-586.

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12. Ma, C. X., Gao, S. J., Gao, X. Q., Wu, M., Wang, R. X., Tang, Z. Y., Fan, F. R., Wu, W. X., Wan, H., Wu, W. Z., ‘Chitosan biopolymer-derived self-powered triboelectric sensor with optimized performance through molecular surface engineering and data-driven learning’ InfoMat, 2019, 1, 1, 116-125.

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10. Brayfield, R. S., Fairbanks, A. J., Loveless, A. M., Gao, S. J., Dhanabal A., Li, W. H., Darr, C., Wu, W. Z., Garner, A. L., ‘The impact of cathode surface roughness and multiple breakdown events on microscale gas breakdown at atmospheric pressure’, J. Appl. Phys, 2019, 125, 203302.

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8. Gao, S. J., Wang, R. X., Ma, C. X., Chen, Z. H., Wang, Y. X., Wu, M., Tang, Z. Y., Bao, N., Ding, D., Wu, W. X., Fan, F. R., Wu, W. Z., ‘Wearable high-dielectric-constant polymers with core-shell liquid metal inclusions for biomechanical energy harvesting and a self-powered user interface’, J. Mater. Chem. A, 2019, 7, 7109-7117.

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5. Liu, Z. K., Liu, S. Y., Wu, W. Z., Liu, R. C., ‘The mechanism of controlled integration of ZnO nanowires using pulsed-laser-induced chemical deposition’, Nanoscale, 2019, 11, 2617-2623.

4. Xiang, Y., Gao, S. J., Xu. G. R., Wu, W. Z., Leng, Y. S., ‘Phase transition in two-dimensional tellurene under mechanical strain modulation’, Nano Energy, 2019, 58, 202-210.

3. Wang, Y. X., Raquel de Souza Borges Ferreira, Wang, R. X., Qiu, G., Li, G. D., Qin, Y., Ye, P. D., Sabbaghi, A., Wu, W. Z., ‘Data-driven and probabilistic learning of the process-structure-property relationship in solution-grown tellurene for optimized nanomanufacturing of high-performance nanoelectronics’, Nano Energy, 2019, 57, 480-491.

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1.  Wang, Y. X., Wang, R. X., Wan, S. H., Wang, Q. X., Kim, M. J., Ding, D., Wu, W. Z. ‘Scalable nanomanufacturing and assembly of chiral-chain piezoelectric tellurium nanowires for wearable self-powered cardiovascular monitoring’, Nano Futures, 2019, 3, 011001.