Ruihua DONG 董瑞华 |
Editor and Reviews:
2024:
[35] Mian Chen#, Ruihua Dong#, Jiayi Song, Jie Qi, Jiangjiang Zhang, Zheng Zhao*, Wentian Zhang, Ying Li*, Ben Zhong Tang*, "Fast and stable antibacterial coating of photosensitive aggregation-induced emission luminogens for disinfection on medical devices", Adv. Healthc. Mater. 2024, 2303967. (IF=10.0)
[34] Ruihua Dong, Lulu Wang, Zebin Li, Jincheng Jiao, Yan Wu, Zhuowei Feng, Xufang Wang, Minglong Chen, Chang Cui, Yi Lu, Xingyu Jiang*, "Stretchable, self-rolled, microfluidic electronics enable conformable neural interfaces of brain and vagus neuromodulation", ACS Nano 2024, 18, 1702. (IF=17.1)
[33] Ruihua Dong, Mian Chen, Yuexiao Jia, Hao Tang, Ziyin Xiong, Yunze Long*, Xingyu Jiang*, “An in situ dressing material containing a multi-armed antibiotic for healing irregular wounds”, Aggregate 2024, e493. (IF=18.8)
[32] Jinhui Jiang, Fulong Ma, Ruihua Dong, Siwei Zhang, Zicong Zhang, Haozhe Tan, Xumin Cai, Zijie Qiu, Yu Xiong*, Wei Han*, Zheng Zhao*, Ben Zhong Tang*, J. Am. Chem. Soc. 2023, 145, 27282. (IF=15.0)
[31] Yan Wu, Jinhao Cheng, Jie Qi, Chen Hang, Ruihua Dong, Boon Chuan Low, Hanry Yu, Xingyu Jiang* Nat. Commun. 2024, 15, 4047. (16.6)
[30] Yuexiao Jia, Wenwen Chen, Rongbing Tang, Jiangjiang Zhang, Xiaoyan Liu, Ruihua Dong, Fupin Hu and Xingyu Jiang*, Cell Host & Microbe 2023, 31, 1101. (IF=30.3)
Prior to UOR:
[29] Ruihua Dong, Ying Li, Mian Chen, Peihong Xiao, Kun Zhou, Zheng Zhao*, Benzhong Tang*, "In situ electrospinning of aggregation-induced emission nanofibrous dressing for wound healing", Small Methods 2022, 2101247. (IF=15.367, Quote:36, Highly Cited Paper)
[28] Dou Wang#, Ruihua Dong#, Xuedong Wang, Xingyu Jiang*, "Flexible electronic catheter for capture and elimination of circulating tumor cells", ACS Nano 2022, 16(4), 5274. (IF=18.027, Quote:10)
[27] Ruihua Dong, Lulu Wang, Chen Hang, Zhen Chen, Xiaoyan Liu, Leni Zhong, Jie Qi, Yuqing Huang, Shaoqin Liu*, Liping Wang*, Yi Lu*, Xingyu Jiang*, "Printed stretchable liquid metal electrode arrays for in vivo neural recording", Small 2021, 17, 2006612. (IF=15.153, Quote:36, Top Downloaded Article)
[26] Ruihua Dong, Xiaoyan Liu, Shiyu Cheng, Lixue Tang, Mian Chen, Leni Zhong, Zhen Chen, Shaoqin Liu*, Xingyu Jiang*, "Highly stretchable metal-polymer conductor electrode array for electrophysiology", Adv. Healthc. Mater. 2020, 10, 2000641. (IF=11.092, Quote:16)
[25] Ruihua Dong, Yong Liu, Lei Mou, Jinqi Deng, Xingyu Jiang*, "Microfluidics-based biomaterials and biodevices", Adv. Mater. 2019, 31, 1805033. (IF=32.086, Quote:99)
[24] Ruihua Dong, Yuexiao Jia, Chongchong Qin, Lu Zhan, Xu Yan, Lin Cui, Yu Zhou, Xingyu Jiang and Yunze Long*, "In situ deposition of a personalized nanofibrous dressing via a handy electrospinning device for skin wound care", Nanoscale 2016, 8, 3482. (IF=8.037, Quote:160)
[23] Ruihua Dong, Chongchong Qin, Xuan Qiu, Xu Yan, Miao Yu, Lin Cui, Yu Zhou, Hongdi Zhang, Xingyu Jiang, Yunze Long*, "In situ precision electrospinning as an effective delivery technique for cyanoacrylate medical glue with high efficiency and low toxicity", Nanoscale 2015, 7, 19648. (IF=8.037, Quote:50)
[22] Fuyan Lv#, Ruihua Dong#, Zhaojian Li, Chongchong Qin, Xu Yan, Xiaoxiao He, Yu Zhou, Shiying Yan, Yunze Long*, "In situ precise electrospinning of medical glue fibers as nonsuture dural repair with high sealing capability and flexibility", Int. J. Nanomedicine 2016, 11, 4213. (IF=7.033, Quote:20)
[21] Miao Yu#, Ruihua Dong#, Xu Yan, Guifeng Yu, Minghao You, Xin Ning, Yunze Long*, "Recent advances in needleless electrospinning of ultrathin fibers: from academia to industrial production", Macromol. Mater. Eng. 2017, 302, 1700002. (IF=4.402, Quote:121)
[20] Yifan Wu, Jiangao Li, Zipeng Shen, Deliang Wang, Ruihua Dong, Jiangjiang Zhang, Yinzhen Pan, Ying Li, Dong Wang, Ben Zhong Tang*, Angewandte Chemie 2022, 134, e202212386. (IF=16.823)
[19] Yuexiao Jia, Jiangjiang Zhang, Yingcan Zhao, Ruihua Dong, Hui Wang, and Xingyu Jiang*, Chem. Commun. 2022, 58, 10544. (IF=6.065)
[18] Li Ding, Chen Hang, Shuaijian Yang, Jie Qi, Ruihua Dong, Yan Zhang, Hansong Sun, and Xingyu Jiang*, Nano Letters 2022, 22, 4482. (IF=12.262)
[17] Mian Chen, Jiangjiang Zhang, Jie Qi, Ruihua Dong, Hongmei Liu, Decheng Wu, Huawu Shao, and Xingyu Jiang*, ACS Nano 2022, 16, 7732. (IF=18.027)
[16] Shuting Cheng, Mian Chen, Kun Wang, Qingqing Liu, Yi Cheng, Ruihua Dong, Kewen Huang, Hao Yuan, Jun Jiang, Wenjuan Li, Junliang Li, Ce Tu, Jian Liu, Xingyu Jiang*, Yue Qi*, and Zhongfan Liu*, J. Mater. Chem. A 2022, 10, 12125. (IF=14.511)
[15] Chen Hang, Li Ding, Shiyu Cheng, Ruihua Dong, Jie Qi, Xiaoyan Liu, Qian Liu, Yan Zhang and Xingyu Jiang*, Adv. Mater. 2021, 2101447. (IF=32.086)
[14] Mian Chen, Ruihua Dong, Jiangjiang Zhang, Hao Tang, Qizhen Li, Huawu Shao and Xingyu Jiang*, ACS Appl. Mater. Interfaces 2021, 10, 29398. (IF=10.383)
[13] Lei Mou, Jie Qi, Lixue Tang, Ruihua Dong, Yuan Gao* and Xingyu Jiang*, Small 2020, 16, 2005336. (IF=15.153)
[12] Shiyu Cheng, Chen Hang, Li Ding, Liujun Jia, Lixue Tang, Lei Mou, Jie Qi, Ruihua Dong, Wenfu Zheng, Yan Zhang, Xingyu Jiang*, Matter 2020, 3, 1664. (IF=19.967)
[11] Xiaohui Zhao, Yuexiao Jia, Ruihua Dong, Jinqi Deng, Hao Tang, Fupin Hu, Shaoqin Liu, Xingyu Jiang*, Chem. Commun. 2020, 56, 10918. (IF=6.065)
[10] Mian Chen, Zhou Long, Ruihua Dong, Le Wang, Jiangjiang Zhang, Sixiang Li, Xiaohui Zhao, Xiandeng Hou, Huawu Shao, Xingyu Jiang*, Small 2020, 16, 1906240. (IF=15.153)
[9] Lei Mou, Ruihua Dong, Binfeng Hu, Zulan Li, JiangJiang Zhang, Xingyu Jiang*, Lab Chip 2019, 19, 2750. (IF=7.517)
[8] Jun Li, Chunlin Sun, Pengrong An, Xiaoyan Liu, Ruihua Dong, Jinghong Sun, Xingyu Zhang, Yanbo Xie, Chuanguang Qin, Wenfu Zheng, Haoli Zhang, Xingyu Jiang*, J. Am. Chem. Soc. 2019, 141, 8816. (IF=16.383)
[7] Xiaohui Zhao, Yuexiao Jia, Juanjuan Li, Ruihua Dong, Jiangjiang Zhang, Xingyu Jiang*, ACS Appl. Mater. Interfaces 2018, 10, 29398. (IF=10.383)
[6] Shicong Xu, Chongchong Qin, Miao Yu, Ruihua Dong, Xu Yan, Hui Zhao, Wenpeng Han, Hongdi Zhang and Yunze Long*, Nanoscale 2015, 7, 12351. (IF=8.307)
[5] Xu Yan, Miao Yu, Lihua Zhang, Xiansheng Jia, Jintao Li, Xiaopeng Duan, Chongchong Qin, Ruihua Dong and Yunze Long*, Nanoscale 2016, 8, 209. (IF=8.307)
[4] Hongwei He, Bin Zhang, Xu Yan, Ruihua Dong, Xiansheng Jia, Guifeng Yu, Xin Ning, Linhua Xia and Yunze Long*, RSC Adv. 2016, 6, 106945. (IF=4.036)
[3] Chongchong Qin, Xiaopeng Duan, Le Wang, Lihua Zhang, Miao Yu, Ruihua Dong, Xu Yan, Hongwei He and Yunze Long*, Nanoscale 2015, 7, 16611. (IF=8.307)
[2] Xu Yan, Miao Yu, Wenpeng Han, Minghao You, Juncheng Zhang, Ruihua Dong, Hongdi Zhang and Yunze Long*, Chin. Phys. B 2016, 25, 7, 078106. (IF=1.652)
[1] Hongwei He, Le Wang, Xu Yan, Lihua Zhang, Miao Yu, Guifeng Yu, Ruihua Dong, Linhua Xia, Seeram Ramakrishna* and Yunze Long*, RSC Adv. 2016, 6, 29423. (IF=4.036)
Issued China patent:
[1] 一种磁纺装置及使用该装置制备微纳米纤维的方法,龙云泽,董瑞华,李金涛,贾宪生,闫旭,于桂凤,魏代善,管殿柱,授权发明专利,CN104878456B,20170222.
[2] 一种熔体磁纺丝装置及利用该装置制备微纳米纤维的方法,龙云泽,董瑞华,闫旭,段晓鹏,犹明浩,王乐,张丽华,魏代善,管殿柱,授权发明专利,CN104878455B,20170315.
[3] 一种大规模磁纺设备及用该设备制备微纳米纤维的方法,龙云泽,董瑞华,闫旭,李金涛,魏代善,于桂凤,贺晓晓,犹明浩,管殿柱,授权发明专利,CN104878461B,20170503.
[4] 一种纳米纤维抗菌敷料原位制备方法,于淼,董瑞华,龙云泽,闫旭,于桂凤,韩文鹏,张红娣,授权发明专利,CN104667338B,20170808.
[5] 一种便携式静电纺丝设备及其使用方法,于淼,龙云泽,董瑞华,闫旭,秦崇崇,韩文鹏,授权发明专利,CN104790049B,20160907.
[6] 一种微波加热熔体静电纺丝装置,龙云泽,黄渊源,董瑞华,闫旭,韩文鹏,张君诚,段晓鹏,秦崇崇,林大鹏,授权发明专利,CN104131358B,20170609.
[7] 一种磁纺制备导电聚合物微纳米纤维的方法,龙云泽,于桂凤,董瑞华,闫旭,李金涛,贾宪生,贺晓晓,魏代善,管殿柱,授权发明专利,CN104911719B,20170707.
[8] 一种磁纺制备石墨烯/聚合物有序微纳米复合纤维的方法,韩文鹏,龙云泽,董瑞华,闫旭,贾宪生,李金涛,赵惠,贺晓晓,魏代善,管殿柱,授权发明专利,CN104862799B,20170118.
[9] 一种大规模制备微纳米纤维的静电纺丝装置,于淼,龙云泽,董瑞华,秦崇崇,授权发明专利,CN105970313B,20180824.
[10] 一种利用气压恒定供液的静电纺丝装置,于淼,龙云泽,董瑞华,秦崇崇,授权发明专利,CN105951190B,20180824.
[11] 一种气流辅助线性齿电极静电纺丝装置,于淼,龙云泽,董瑞华,秦崇崇,授权发明专利,CN105970314,20180824.
[12] 一种消除PM2.5颗粒物的静电喷雾路灯装置,于淼,闫旭,龙云泽,董瑞华,盛琛皓,韩文鹏,授权发明专利,CN104776384B,20170412.
[13] 一种消除汽车尾气中PM2.5颗粒物的装置及其使用方法,于淼,闫旭,龙云泽,董瑞华,盛琛皓,韩文鹏,授权发明专利,CN104912627B,20180511.
[14] 一种低温原位静电纺丝装置,龙云泽,闫旭,韩文鹏,秦崇崇,董瑞华,张红娣,张君诚,于经学,林大鹏,盛琛皓,授权发明专利,CN104313707B,20160824.
[15] 一种交叉纳米纤维P-N异质结阵列的制备方法,龙云泽,陈帅,盛琛皓,韩文鹏,董瑞华,张红娣,授权发明专利,CN103943778B,20160817.
[16] 一种静电喷雾消除可入肺颗粒物的方法,龙云泽,闫旭,韩文鹏,秦崇崇,董瑞华,张红娣,张君诚,林大鹏,盛琛皓,赵惠,张保生,授权发明专利,CN104259002B,20161012.
[17] 一种无溶剂静电纺丝制备聚氨酯微纳米纤维的方法,龙云泽,何宏伟,林大鹏,闫旭,韩文鹏,王乐,张丽华,董瑞华,授权发明专利,CN104532367B,20160824.
[18] 一种规模化无溶剂电纺制备光固化材料微纳米纤维的方法,龙云泽,何宏伟,张丽华,王乐,段晓鹏,董瑞华,秦崇崇,赵惠,夏临华,授权发明专利,CN105220244A,20160106.
[19] 一种基于UV固化的无溶剂静电纺丝装置,龙云泽,何宏伟,王乐,张丽华,段晓鹏,董瑞华,秦崇崇,赵惠,夏临华,授权发明专利,CN105088367B,20171222.
[20] 一种力敏可拉伸电纺图案化导电纳米纤维膜及其制备方法,龙云泽,于桂凤,闫旭,贺晓晓,韩文鹏,董瑞华,贾宪生,李金涛,犹明浩,授权发明专利,CN104894750B,20170503.
[21] 一种电容式超薄柔性应力传感器及其制备方法,闫旭,龙云泽,于桂凤,贺晓晓,王乐,董瑞华,贾宪生,李金涛,授权发明专利,CN104897316B,20170926.
[22] 一种氯化钴湿敏电纺微纳米纤维膜及其制备方法和应用,闫旭,龙云泽,犹明浩,于桂凤,贺晓晓,贾宪生,董瑞华,张红娣,授权发明专利,CN105568557B,20190118.
[23] 颅内伤口愈合监测装置、其制备方法及应用,蒋兴宇,董瑞华,奚磊,秦伟,授权发明专利,CN109222905A,20190118.
[24] 一种负载AIE荧光纳米纤维敷料制备方法与应用,蒋兴宇,董瑞华,授权发明专利,CN110787316A,20200214.
Substantive examination:
[25] 一种壳聚糖纳米纤维及其规模化电纺制备方法和应用,于淼,龙云泽,董瑞华,闫旭,发明专利申请,CN106693030A,20170524
[26]一种海藻酸钠纳米纤维及其规模化电纺制备方法和应用,于淼,龙云泽,董瑞华,闫旭,发明专利申请,CN106480517A,20170308.
[27] 一种柔性可拉伸神经电极及其制备方法和应用,蒋兴宇,董瑞华,刘晓艳,唐立雪,发明专利申请,CN110251125A,20190920.
[28] 一种液态金属微电极阵列及其制备方法,蒋兴宇,董瑞华,发明专利申请,CN111920404A,20201113.
[29] 一种软硬可调的植入式神经电极及其制备方法,蒋兴宇,董瑞华,发明专利申请,CN202011414621.6,20200703
[30] 一种液态金属光遗传神经电极及其制备方法,蒋兴宇,董瑞华,发明专利申请,CN113476749A,20210115
[31] 一种自卷曲液态金属外周神经电极及其制备方法,蒋兴宇,董瑞华,李泽彬,发明专利申请,20220321.
[32] 一种液态金属微丝神经电极及其制备方法,蒋兴宇,董瑞华,文天昀,发明专利申请,20220322.