人物經(jīng)歷
工作經(jīng)歷
l2002.09~2007.07 中國科學(xué)院金屬研究所材料科學(xué)與工程博士學(xué)位
l2007.09~2012.12 香港城市大學(xué),應(yīng)用物理與材料科學(xué)系研究員
l2013. 01~2013.08 香港城市大學(xué),應(yīng)用物理與材料科學(xué)系高級研究員
l2013.09~中國科學(xué)院深圳先進技術(shù)研究院,功能薄膜材料研究中心
研究員/中心主任
人物評價及貢獻
唐永炳研究員將新的設(shè)計思路運用到了廉價環(huán)保堿土金屬離子電池體系,突破了鈣離子電池多年發(fā)展無法克服的室溫不可逆的瓶頸。美國德克薩斯大學(xué)電化學(xué)及儲能材料著名學(xué)者Manthiram教授在《Chem》上對該研究工作做了專題評論(Chem, 2018, 4, 1194-1207),指出:“該研究工作不同于傳統(tǒng)思想,為發(fā)展新型電池化學(xué)反應(yīng)原理或結(jié)構(gòu)帶來了新視角”( ..brings new insights to the broad battery community with respect to developing new battery chemistries or configurations; it represents a departure from conventional thinking.. )。Manthiram教授還認(rèn)為:“該工作為發(fā)展室溫下可逆循環(huán)的鈣離子電池提供了希望,并且這種電池設(shè)計策略將為發(fā)展高能量密度、低成本的鈣離子電池或其他電池體系擴大了活性電極材料的選擇范圍”(..the interesting results presented in this article offer hope for the feasibility of operating reversible CIBs at room temperature. It is also expected that this battery design strategy will expand the options for active electrode materials for a variety of CIB systems or other battery chemistries toward developing high energy battery systems at an affordable cost..)。
主持國家自然基金、軍委科技委、中科院、廣東省、深圳市等科研項目20余項。已發(fā)表論文共130余篇,受到了國內(nèi)外同行的廣泛關(guān)注與高度評價,其中影響因子IF>10論文50余篇,8篇入選ESI高被引用論文。第一及通訊作者代表性論文發(fā)表于Nat. Chem., Nat. Commun., Adv. Mater., Angew Chem., Adv. Energy Mater.,Nano Lett.,ACS Nano,Adv. Funct. Mater.等材料及能源領(lǐng)域知名國際期刊,其中11篇被選為封面文章。申請專利397項,發(fā)明專利262項,PCT國際專利47項,美國歐盟日韓專利12項,授權(quán)專利110項。其中23項發(fā)明專利實現(xiàn)了轉(zhuǎn)移轉(zhuǎn)化,研發(fā)的“柔性超快充放電池”被第十九屆高交會專家委員會從1000個推薦產(chǎn)品中評為“十大人氣產(chǎn)品獎”和“優(yōu)秀產(chǎn)品獎”。
主要成就
主要成就及獲獎
(1)國家優(yōu)秀青年基金獲得者,國家自然科學(xué)基金委員會,2018
(2)深圳市高層次專業(yè)人才(地方級領(lǐng)軍人才),深圳市人力資源和社會保障局,2018-2023
(3)柔性超快充放電池,十大人氣獎,第十九屆高交會,2017
(4)超硬納米金剛石涂層精密刀具,優(yōu)秀產(chǎn)品獎,第十九屆高交會,2017
(5)用于廢水處理的高效硼摻雜金剛石陽極,優(yōu)秀產(chǎn)品獎,第十九屆高交會,2017
(6)環(huán)保型高效低成本鋁-石墨雙離子電池,優(yōu)秀產(chǎn)品獎,第十九屆高交會,2017
(7)基于鋁負(fù)極的高效低成本新型電池,優(yōu)秀產(chǎn)品獎,第十九屆高交會,2017
(8)一體化超高倍率雙離子電池,優(yōu)秀產(chǎn)品獎,第十九屆高交會,2017
(9)深圳市孔雀人才B類計劃,深圳市政府,2014
(10)葛庭燧獎研金,中國科學(xué)院金屬研究所,2009
(11)劉永齡獎學(xué)金特別獎,中國科學(xué)院, 2007
(12)師昌緒獎學(xué)金二等獎,中國科學(xué)院金屬研究所, 2007
(13)優(yōu)秀論文獎,沈陽材料國家實驗室,2006
(14)院長獎學(xué)金優(yōu)秀獎,中國科學(xué)院,2005
(15)師昌緒獎學(xué)金一等獎,中國科學(xué)院金屬研究所, 2005
代表性項目
代表性項目
(1) 國家自然科學(xué)基金委員會-國家優(yōu)秀青年科學(xué)基金項目,51822210,新型雙離子電池及其電極材料研究,2019.01.01-2021.12.31,項目負(fù)責(zé)人。
(2) 國家自然科學(xué)基金委員會-國自然面上項目,51972329,室溫鈣離子電池鈣負(fù)極界面膜形成機理及改性研究,2020.01.01-2023.12.31,項目負(fù)責(zé)人。
(3) 企業(yè)橫向項目,中國科學(xué)院深圳先進技術(shù)研究院—湖南久森新能源有限公司 中科久森新能源技術(shù)聯(lián)合實驗室,2020.03-2023.03,項目負(fù)責(zé)人。
(4) 企業(yè)橫向項目-華為創(chuàng)新研究計劃,低成本長壽命大規(guī)模儲能技術(shù)項目,2019.10.31-2020.11.30,項目負(fù)責(zé)人。
(5) 中央軍委科學(xué)技術(shù)委員會-國防科技創(chuàng)新特區(qū)項目,18-163-12-ZT-003-002-01,用于野外生存的仿生多級次金剛石薄膜及污水處理性能研究,2018.10.01-2020.12.31,項目負(fù)責(zé)人。
(6) 廣東省重點領(lǐng)域研發(fā)計劃專項-新能源汽車,2019B090914003,新型高能量低成本鋁基電池研發(fā),2019.05.01-2022.4.30,項目負(fù)責(zé)人。
(7) 廣東省國際科技合作與交流項目-重點國別及“一帶一路”科技合作-廣東省科學(xué)技術(shù)廳,2018A050506066,基于廉價金屬負(fù)極的高性能儲能器件應(yīng)用關(guān)鍵技術(shù)研發(fā),2018.09.18-2021.12.31,項目負(fù)責(zé)人。
(8) 國家青年科學(xué)基金項目-國家青年基金項目,51302238,多種襯底上AlN一維納米結(jié)構(gòu)陣列的大面積可控制備及其摻雜與器件應(yīng)用研究,2014/1-2016/12,項目負(fù)責(zé)人。
(9) 中國科學(xué)院條件保障與財務(wù)局-中科院院級裝備科研青年人才類項目,yz201440,多功能全自動薄膜應(yīng)力測試儀的研制,2015/01-2017/06,項目負(fù)責(zé)人。
(10) 科技促進發(fā)展局-中科院STS項目,KFJ-STS-SCYD-124,廉價金屬鋁基負(fù)極高效低成本儲能器件研發(fā),2018/01-2018/12,項目負(fù)責(zé)人。
(11) 廣東省科學(xué)技術(shù)廳-廣東省公益項目,2014A010105032,氮化鋁納米纖維增強高分子電子封裝復(fù)合材料的制備及其復(fù)合機理研究,2015/01-2017/01,項目負(fù)責(zé)人。
(12) 廣東省科學(xué)技術(shù)廳-省工程中心,粵科函產(chǎn)學(xué)研字[2015]1487號廣東省金剛石與立方氮化硼超硬涂層工程技術(shù)研究中心,2015/10-至今,項目負(fù)責(zé)人。
(13) 廣東省科學(xué)技術(shù)廳-省工程中心,粵科函產(chǎn)學(xué)研字[2017]1649號,廣東省高效低成本儲能器件工程技術(shù)研究中心,2017/09-至今,項目執(zhí)行負(fù)責(zé)人。
(14) 企業(yè)橫向項目-深圳瑞能實業(yè)有限公司,新型高效低成本儲能電池技術(shù)聯(lián)合實驗室,2017.05.01-2019.05.01,項目負(fù)責(zé)人。
(15) 深圳市發(fā)展改革委員會-發(fā)改委工程實驗室,深發(fā)改[2015]1837號,深圳航空航天超硬涂層材料與技術(shù)工程實驗室,2016/01-2017/12,項目負(fù)責(zé)人。
(16) 深圳市科技創(chuàng)新委員會-深圳市技術(shù)攻關(guān)項目,JSGG20170413153302942,新型高功率鋁-石墨二次電池關(guān)鍵技術(shù)研發(fā),2017/07-2019/06,參與單位負(fù)責(zé)人。
(17) 深圳市科技創(chuàng)新委員會-深圳市技術(shù)攻關(guān)項目,JSGG20150602143328010,海洋船舶環(huán)保防污膜關(guān)鍵技術(shù)研發(fā),2016/01-2018/0,項目負(fù)責(zé)人。
(18) 深圳市科技創(chuàng)新委員會-深圳市孔雀技術(shù)創(chuàng)新項目,KQJSCX20170331161244761,基于非貴金屬負(fù)極的高性能電化學(xué)儲能器件應(yīng)用關(guān)鍵技術(shù)研發(fā),2017.10-2019.10,項目負(fù)責(zé)人。
(19) 國家和省計劃配套,GJHS20160329112009617,多功能全自動薄膜應(yīng)力測試儀研制,2015/01-2017/12,項目負(fù)責(zé)人。
(20) 國家和省計劃配套,GJHS20170314161200165,多功能全自動薄膜應(yīng)力測試儀研制,2017/07-2018/6,項目負(fù)責(zé)人。
代表性論文
代表性論文
(1)Bifa Jiu2020, Wenjiao Yaou2020, Yongping Zhengu2020, Pinit Kidkhunthod, Xiaolong Zhou, Sarayut Tunmee, Suchinda Sattayaporn, Hui-Ming Cheng*, Haiyan He, andYongbing Tang*, A fluoroxalate cathode material for potassium-ion batteries with ultra-long cyclability,Nature Communications, 2020,11(1), 1225.
(2) Chunlei Jiangu2020, Lei Xiangu2020, Shijie Miaou2020, Lei Shi, Donghao Xie, Jiaxiao Yan, Zijian Zheng*, Xiaoming Zhang,Yongbing Tang*, Flexible Interface Design for Stress Regulation of a Silicon Anode toward Highly Stable Dual-Ion Batteries,Advanced Materials, 2020, 32(17), 190847.
(3) Ao Yuu2020, Qingguang Panu2020, Miao Zhangu2020, Donghao Xie, andYongbing Tang*, Fast Rate and Long Life Potassium-Ion Based Dual-Ion Battery through 3D Porous Organic Negative Electrode,Advanced Functional Materials, 2020, 2001440.
(4) Yuanqi Lanu2020, Wenjiao Yaou2020, Xiaolong Heu2020, Tianyi Song, andYongbing Tang*, Mixed polyanionic compounds as positive electrodes in low-cost electrochemical energy storage,Angewandte Chemie-International Edition, 2020, 59: 2-10.
(5) Xuewu Ouu2020, Ge Zhangu2020, Songquan Zhang, Xiaoyu Tong,Yongbing Tang*, Simultaneously pre-alloying and artificial solid electrolyte interface towards highly stable aluminum anode for high-performance Li hybrid capacitor,Energy Storage Materials, 2020, 28, 357-363.
(6) Xiaolong Zhou, Yongping Zheng, Takuya Shimizu, Chanan Euaruksakul, Sarayut Tunmee, Tao Wang, Hidetoshi Saitoh, andYongbing Tang*, Colorful diamond-like carbon films from different micro-/nano-structures,Advanced Optical Materials, 2020, 1902064.
(7) Haiyan Heu2020, Wenjiao Yaou2020, Sarayut Tunmeeu2020, Xiaolong Zhou, Bifa Ji, Nanzhong Wu, Tianyi Song, Pinit Kidkhunthod, andYongbing Tang*, An Iron-based Polyanionic Cathode for Potassium Storage with High Capacity and Excellent Cycling Stability,Journal of Materials Chemistry A, 2020, 8: 9128-9136.
(8) Tao Wang, Lei Huang, Yuzhi Liu, Xingxing Li, Chunhua Liu, Stephan Handschuh-Wang, Yang Xu, Ying Zhao*,Yongbing Tang*, Robust Biomimetic Hierarchical Diamond Architecture with a Self-Cleaning, Antibacterial, and Antibiofouling Surface,ACS Applied Materials & Interfaces, 2020, 12(21): 24432-24441.
(9) Xin Leiu2020, Yongping Zhengu2020, Fan Zhang*, Yong Wang,Yongbing Tang*, Highly stable magnesium-ion-based dual-ion batteries based on insoluble small-molecule organic anode material,Energy Storage Materials, 2020, 30: 34-41.
(10) Jihui Langu2020, Jinrui Liu2020, Xuewu Ouu2020, Fan Zhang*, Kyungsoo Shin,Yongbing Tang*, A Flexible Potassium-Ion Hybrid Capacitor with Superior Rate Performance and Long Cycling Life,ACS Applied Materials & Interfaces, 2020, 12(2): 2424-2431.
(11) Donghao Xieu2020, Miao Zhangu2020, Yue Wuu2020, Lei Xiang, andYongbing Tang*, A Flexible Dual-Ion Battery Based on Sodium-Ion Quasi-Solid-State Electrolyte with Long Cycling Life,Advanced Functional Materials, 2020, 30(5), 1906770.
(12) Xingqi Changu2020, Xiaolong Zhouu2020, Xuewu Ouu2020, Chun-Sing Lee,* Jiwei Zhou, andYongbing Tang*, Ultrahigh Nitrogen Doping of Carbon Nanosheets for High Capacity and Long Cycling Potassium Ion Storage,Advanced Energy Materials, 2019, 1902672.
(13) Tianyi Songu2020, Wenjiao Yaou2020, Pinit Kiadkhunthodu2020, Yongping Zheng, Nanzhong Wu, Xiaolong Zhou, Sarayut Tunmee, Suchinda Sattayaporn, andYongbing Tang*, A Low-Cost and Environmentally Friendly Mixed Polyanionic Cathode for Sodium-Ion Storage,Angewandte Chemie International Edition, 2020,59(2):740-745.
(14) Wenjiao Yaou2020, A. Robert Armstrongu2020, Xiaolong Zhouu2020, Moulay-Tahar Sougrati, Pinit Kidkhunthod, Sarayut Tunmee, Chenghua Sun,* Suchinda Sattayaporn, Philip Lightfoot,* Bifa Ji, Chunlei Jiang, Nanzhong Wu,Yongbing Tang*, Hui-Ming Cheng*, An oxalate cathode for lithium ion batteries with combined cationic and polyanionic redox,Nature Communications, 2019,10,3483. (IF:11.878)
(15) Jihui Langu2020, Chunlei Jiangu2020, Yue Fangu2020, Lei Shi, Shijie Miao,Yongbing Tang*, Room-Temperature Rechargeable Ca-Ion Based Hybrid Batteries with High Rate Capability and Long-Term Cycling Life,Advanced Energy Materials, 2019, 1901099. (IF:24.884)
(16) Chunyu Cuiu2020, Heng Wangu2020, Meng Wang, Xuewu Ou, Zengxi Wei, Jianmin Ma,*Yongbing Tang*, Hollow Carbon Nanobelts Co-Doped with Nitrogen and Sulfur via a Self-Templated Method for a High-Performance Sodium-Ion Capacitor,Small, 2019,15(34), 1902659. (IF:10.856)
(17) Miao Zhang, Lei Xiang, Massimiliano Galluzzi, Chunlei Jiang, Shanqing Zhang,* Jiangyu Li, andYongbing Tang*, Uniform distribution of alloying/dealloying stress for high structural stability of an al anode in high-areal-density lithium-ion batteries,Advanced Materials, 2019, 31, 1900826. (IF: 25.809)
(18) Xiaolong Zhouu2020, Qirong Liuu2020, Chunlei Jiangu2020, Bifa Ji, xiulei Ji*,Yongbing Tang*, and Hui-Ming Cheng*, Beyond Conventional Batteries: Strategies towards Low-Cost Dual-Ion Batteries with High Performance,Angewandte Chemie-International Edition, 2019,1814294. (IF:12.257)
(19) Nanzhong Wuu2020, Wenjiao Yaou2020, Xiaohe Song, Ge Zhang, Bingjie, Chen, Jinhu Yang, andYongbing Tang*, A Calcium-Ion Hybrid Energy Storage Device with High Capacity and Long Cycling Life under Room Temperature,Advanced Energy Materials, 2019, 1803865. (IF:24.884)
(20) Kyung Soo Shinu2020, Fan Zhangu2020, Xuewu Ouu2020, Nanzhong Wu, Chun-Sing Lee*, andYongbing Tang*, Hybridizing Anions towards Fast Diffusion Kinetics for Tri-Ion Batteries with Significantly Improved Rate Capability and Cycling Life,Journal of Materials Chemistry A,2019,7(18):10930-10935 ( IF:10.733)
(21) Miao Zhang, Xiaohe Song, Xuewu Ou,Yongbing Tang*, Recharge batteries based on anion intercalation graphite cathodes,Energy Storage Materials, 2019, 16,65-84 (Citescore:13.31)
(22) Qirong Liu, Haitao Wang, Chunlei Jiang,Yongbing Tang*, Multi-ion Strategies towards Emerging Rechargeable Batteries with High Performance,Energy Storage Materials, 2019,1903028. (Citescore:13.31)
(23) Ge Zhangu2020, Xuewu Ouu2020, Chunyu Cuiu2020, Jianmin Ma*, Jinghai Yang*,Yongbing Tang*, High-Performance Cathode Based on Self-Templated 3D Porous Microcrystalline Carbon with Improved Anion Adsorption and Intercalation,Advanced Functional Materials, 2019,29(2), 1806722.(IF:15.621)
(24) Meng Wang, Chunlei Jiang, Songquan Zhang, Xiaohe Song,Yongbing Tang*, Hui-Ming Cheng*, Reversible calcium alloying enables a practical room-temperature rechargeable calcium-ion battery with a high discharge voltage,Nature Chemistry, 2018,10(6):667-672.(IF:23.193)
(25) Chunlei Jiangu2020, Yue Fangu2020, Wenyong Zhangu2020, Xiaohe Song, jihui Lang, Lei Shi,Yongbing Tang*, A Multiu2010Ion Strategy towards Rechargeable Sodiumu2010Ion Full Batteries with High Working Voltage and RateCapability,Angewandte Chemie- International Edition, 2018, 1810575. (IF :12.257)
(26) Shi Wuu2020, Fan Zhangu2020,Yongbing Tang*, A novel calcium-ion battery based on dual-carbon configuration with high working voltage and long-cycling life,Advanced Science, 2018,5(8),1701082. (IF :15.804)
(27) Junnan Hao, Jian Zhang, Guanglin Xia, Yajie Liu, Yang Zheng,Wenchao Zhang,Yongbing Tang*, Wei Kong Pang, and Zaiping Guo*, Heterostructure Manipulation via In-Situ Localized Phase Transformation for High-Rate and Highly Durable Lithium Ion Storage,ACS Nano, 2018, 12, 10, 10430-10438. (IF: 13.903)
(28) Na Li, Fan Zhang*,Yongbing Tang*, Hierarchical T-Nb2O5 nanostructure with hybrid mechanisms of intercalation and pseudocapacitance for potassium storage and high-performance potassium dual-ion batteries,Journal of Materials Chemistry A, 2018, 6(37):17889-17895 ( IF:10.733)
(29) Meng Wang,Yongbing Tang*, A Review on the Features and Progress of Dual-Ion Batteries,Advanced Energy Materials, 2018, 8(19),1703320. (IF:24.884)
(30) Guanghai Chenu2020, Fan Zhangu2020, Zhiming Zhouu2020, Jinrui Li,Yongbing Tang*, A Flexible Dual-Ion Battery Based on PVDF-HFP-Modifed Gel Polymer Electrolyte with Excellent Cycling Performance and Superior Rate Capability,Advanced Energy Materials, 2018, 801219 (IF:24.884)
(31) Haili Zhuu2020, Fan Zhangu2020, Jinrui Li,Yongbing Tang*, Penne-Like MoS2/Carbon Nanocomposite as Anode for Sodium-Ion-Based Dual-Ion Battery,Small, 2018, 14(13), 1703951. (IF: 10.856)
(32) Panpan Qinu2020, Meng Wangu2020, Na Liu2020, Haili Zhu, Xuan Ding, andYongbing Tang*, Bubble-Sheet-Like Interface Design with an Ultra-Stable Solid Electrolyte Layer for High-Performance Dual-Ion Batteries,Advanced Materials, 2017, 29, 1606805. (cover image, IF: 25.809)
(33) Bifa Ji, Fan Zhang, Xiaohe Song,Yongbing Tang*, A Novel Potassium-Ion-Based Dual-Ion Battery,Advanced Materials, 2017, 29,1700519. (IF: 25.809)
(34) Xuefeng Tongu2020, Fan Zhangu2020, Guanghai Chen, Xinyu Liu, Lin Gu*,Yongbing Tang*, Core-Shell Aluminum@Carbon Nanospheres for Dual-Ion Batteries with Excellent Cycling Performance under High Rates,Advanced Energy Materials, 2017, 8(6), 1701967. (IF:24.884)
(35) Chunlei Jiang, Yue Fang, Jihui Lang,Yongbing Tang*, Integrated Configuration Design for Ultrafast Rechargeable Dual-Ion Battery,Advanced Energy Materials, 2017, 7, 1700913. (IF:24.884)
(36) Maohua Shengu2020, Fan Zhangu2020, Bifa Jiu2020, Xuefeng Tong,Yongbing Tang*, A Novel Tin-Graphite Dual-Ion Battery Based on Sodium-Ion Electrolyte with High Energy Density,Advanced Energy Materials, 2017, 7,1601963. (IF:24.884)
(37) Songquan Zhangu2020, Meng Wangu2020, Zhiming Zhouu2020,Yongbing Tang*, Multifunctional Electrode Design Consisting of 3D Porous Separator Modulated with Patterned Anode for High-Performance Dual-Ion Batteries,Advanced Functional Materials, 2017,1703035. (IF:15.621)
(38) Bifa Ji, Fan Zhang, Maohua Sheng, Xuefeng Tong,Yongbing Tang*, A Novel and Generalized Lithium-Ion-Battery Configuration Utilizing Al Foil as Both Anode and Current Collector for Enhanced Energy Density,Advanced Materials, 2016, 28, 1604219. (IF: 25.809)
(39) Xiaolong Zhang,Yongbing Tang*, Fan Zhang, Chun-sing Lee*, A Novel Aluminum-Graphite Dual-Ion Battery,Advanced Energy Materials, 2016, 6(11): 1502588-1-1502588-6. (IF:24.884)
(40) Xuefeng Tongu2020, Fan Zhangu2020, Bifa. Ji, Maohua Sheng,Yongbing Tang*, Carbon-Coated Porous Aluminum Foil Anode for High-Rate, Long-Term Cycling Stability and High Energy Density Dual-Ion Batteries,Advanced Materials, 2016, 28(45): 9979-9985.(cover image, IF:25.809).
代表性授權(quán)專利
代表性授權(quán)專利
(1) 唐永炳;張小龍;張帆,韓國發(fā)明專利,申請?zhí)枺篕R1020187012967,申請日:2016-11-12,授權(quán)日:2020-03-14;
(2) 唐永炳;張小龍;張帆,Secondary battery and preparation method therefor,美國發(fā)明專利,申請?zhí)枺篣S15/773805,申請日:2016-11-12,授權(quán)日:2020-05-08;
(3) 唐永炳;張小龍;張帆,一種二次電池及其制備方法,發(fā)明專利,申請?zhí)枺篊N201610998823.7,申請日:2016-11-12,授權(quán)日:2019-06-28;
(4) 唐永炳;張小龍,一種二次電池及其制備方法,發(fā)明專利,申請?zhí)枺篊N201510856238.9,申請日:2015-11-30,授權(quán)日:2018-11-27;
(5) 唐永炳;張帆,二硫化鉬/聚苯胺復(fù)合材料、制備方法及鋰離子電池,發(fā)明專利, 申請?zhí)枺?CN201410638073.3,申請日:2014-11-12,授權(quán)日:2018-05-11;
(6) 唐永炳;張帆;李振聲,一種鈦酸鈉納米線/石墨烯復(fù)合負(fù)極材料及其制備方法,發(fā)明專利,申請?zhí)枺?CN201510682930.4,申請日: 2015-10-20,授權(quán)日:2018-06-05;
(7) 唐永炳;李文躍;李振聲,石墨烯/聚苯胺/硫復(fù)合正極材料及其制備方法、鋰硫電池,發(fā)明專利,申請?zhí)枺?CN201510960678.9,申請日:2015-12-21,授權(quán)日:2018-08-14;
(8) 唐永炳;張小龍,注水發(fā)電環(huán)保電池及其正電極和電池組,發(fā)明專利,申請?zhí)枺篊N201510660753.X,申請日: 2015-10-14,授權(quán)日:2018-10-16;
(9) 唐永炳;謝呈德;圣茂華,一種多孔錫箔負(fù)極及其制備方法和鈉離子二次電池,發(fā)明專利,申請?zhí)枺篊N201611248878.2,申請日:2016-12-29,授權(quán)日:2020-04-21;
(10) 楊揚;唐永炳;張帆,一種鈷酸鋅/石墨烯復(fù)合負(fù)極材料及其制備方法和鋰離子電池,發(fā)明專利, 申請?zhí)枺?CN201710155025.2,申請日:2017-03-14,授權(quán)日:2020-02-11;
(11) 唐永炳;吳石;張帆,鉀離子混合超級電容器及其制備方法, 發(fā)明專利,申請?zhí)枺篊N201710583412.6,申請日:2017-07-17,授權(quán)日:2020-03-20;
(12) 唐永炳;王恒;王蒙,鈉離子混合超級電容器及其制備方法,發(fā)明專利,申請?zhí)枺篊N201710583421.5,申請日: 2017-07-17,授權(quán)日:2020-02-11;
(13) 唐永炳;朱海莉;張帆,金屬導(dǎo)電材料用作鎂離子混合超級電容器負(fù)極和鎂離子混合超級電容器及其制備方法,發(fā)明專利,申請?zhí)枺篊N201710583516.7,申請日:2017-07-17,授權(quán)日:2019-11-15;
(14) 唐永炳;謝呈德;方月,鈉離子電池用電解液、制備方法及包含該鈉離子電池用電解液的鈉離子電池,發(fā)明專利,申請?zhí)枺篊N201710760819.1,申請日:2017-08-29,授權(quán)日:2020-01-14;
(15) 唐永炳;謝呈德,電池的充電方法及充電設(shè)備,發(fā)明專利,申請?zhí)枺篊N201710771361.X,申請日:2017-08-29,授權(quán)日:2019-11-15;
(16) 唐永炳;謝呈德;張桂河,鋰離子電池圓形墊片及鋰離子電池,新型專利,申請?zhí)枺篊N201720832602.2,申請日:2017-07-10,授權(quán)日: 2018-06-19;
(17) 唐永炳;蔣春磊;石磊,電池極片附著力測試設(shè)備,新型專利,申請?zhí)枺篊N201721309229.9,申請日:2017-10-09,授權(quán)日:2018-05-01;
(18) 唐永炳;曹建紅,電池漿料的噴涂裝置及電池極片生產(chǎn)設(shè)備,新型專利, 申請?zhí)? CN201721481790.5,申請日:2017-11-08,授權(quán)日:2018-06-19;
(19) 唐永炳;李星星;黃磊;王陶;楊揚,表面具有金剛石層的鋁電極及其鋰二次電池,新型專利,申請?zhí)枺篊N201721762972.X,申請日:2017-12-15,授權(quán)日:2018-07-17;
(20) 楊揚;唐永炳;李子豪;谷繼騰;張文軍,一種金屬空氣電池, 新型專利,申請?zhí)枺篊N201721845762.7,申請日: 2017-12-26,授權(quán)日:2018-08-28;
(21) 唐永炳;李子豪;楊揚;谷繼騰;張文軍,一種超級電容器,新型專利, 申請?zhí)枺篊N201820358005.5,申請日:2018-03-15,授權(quán)日:2018-10-26;
(22) 唐永炳;蔣春磊;項磊;石磊, 具有涂層的極耳、電芯、電池和電動工具, 新型專利, 申請?zhí)枺篊N201821128441.X,申請日:2018-07-16,授權(quán)日:2019-02-12;
(23) 唐永炳;石磊;蔣春磊,電池原位拉曼測試裝置,新型專利, 申請?zhí)枺篊N201821824585.9,申請日:2018-11-06, 授權(quán)日:2019-08-16;
(24) 唐永炳;蔣春磊;石磊;方月,電池原位應(yīng)力測試裝置,新型專利,申請?zhí)枺篊N201821868416.5,申請日:2018-11-13,授權(quán)日:2019-08-16;
(25) 唐永炳;閆家肖;蔣春磊;石磊,復(fù)合負(fù)極片、二次電池,新型專利,申請?zhí)枺篊N201822080185.8,申請日:2018-12-11,授權(quán)日:2019-08-02;
(26) 唐永炳;劉齊榮;石磊;蔣春磊,電池原位X射線衍射測試輔助裝置,新型專利, 申請?zhí)枺篊N201822112688.9,申請日:2018-12-14,授權(quán)日:2019-11-19;
(27) 唐永炳;蔣春磊,一種過渡金屬硼化物涂層及其制備方法,發(fā)明專利, 申請?zhí)枺篊N201410635526.7,申請日: 2014-11-12,授權(quán)日:2018-08-14;
(28) 唐永炳;朱雨,等離子源系統(tǒng)和等離子生成方法,發(fā)明專利,申請?zhí)枺篊N201410638080.3,申請日:2014-11-12,授權(quán)日:2017-12-19;
(29) 楊揚;楊映虎;唐永炳,輻射式蒸發(fā)加熱器及該輻射式蒸發(fā)加熱器的制造方法,發(fā)明專利,申請?zhí)枺篊N201410658772.4,申請日:2014-11-18,授權(quán)日:2017-09-26;
(30) 唐永炳;蔣春磊,軸類零部件涂層摩擦磨損試驗機,發(fā)明專利, 申請?zhí)枺篊N201410663763.4,申請日:2014-11-19,授權(quán)日:2017-07-28;
(31) 楊揚;張文軍;唐永炳,金剛石納米針陣列復(fù)合材料及其制備方法和應(yīng)用,發(fā)明專利,申請?zhí)枺篊N201410720492.1,申請日:2014-12-02,授權(quán)日:2017-05-03;
(32) 唐永炳;蔣春磊, 一種測定含氫類金剛石涂層在低溫下的熱膨脹系數(shù)的方法, 發(fā)明專利, 申請?zhí)枺篊N201510690729.0,申請日:2015-10-22,授權(quán)日:2019-10-08;
(33) 楊揚;唐永炳;李剛, 一種植入式芯片的封裝結(jié)構(gòu)及其制備方法,發(fā)明專利,申請?zhí)枺篊N201510742481.8,申請日:2015-11-04,授權(quán)日:2019-03-01;
(34) 唐永炳;蔣春磊,一種仿生結(jié)構(gòu)立方氮化硼涂層及其制備方法,發(fā)明專利,申請?zhí)枺篊N201510822743.1,申請日:2015-11-24,授權(quán)日:2019-03-01;
(35) 唐永炳;蔣春磊;張靜,一種金剛石/類金剛石多層復(fù)合涂層及其制備方法,發(fā)明專利,申請?zhí)枺篊N201510824541.0,申請日:2015-11-24,授權(quán)日:2019-03-01;
(36) 唐永炳;朱雨;;芑,一種用于制備金剛石的基臺組件,發(fā)明專利, 申請?zhí)枺篊N201510870990.9,申請日: 2015-12-02,授權(quán)日:2019-05-07;
(37) 唐永炳;朱雨;;芑;劉輝,等離子體源單元、等離子體源裝置及其應(yīng)用,發(fā)明專利,申請?zhí)枺篊N201510870305.2,申請日:2015-12-02,授權(quán)日:2018-08-31;
(38) 唐永炳;李剛;楊揚,一種硬質(zhì)合金襯底的金剛石/碳化硼復(fù)合涂層及制備方法,發(fā)明專利,申請?zhí)枺篊N201510945923.9,申請日:2015-12-16,授權(quán)日:2018-08-31;
(39) 唐永炳;;芑;朱雨,用于金剛石單晶同質(zhì)外延的籽晶托盤、基臺組件及其應(yīng)用,發(fā)明專利,申請?zhí)枺篊N201510974331.X,申請日:2015-12-23,授權(quán)日:2018-05-01;
(40) 唐永炳;朱海莉;蔣春磊,一種類金剛石/立方氮化硼多層復(fù)合涂層及其制備方法,發(fā)明專利,申請?zhí)枺篊N201610436286.7,申請日:2016-06-17,授權(quán)日:2019-07-02;
(41) 唐永炳;王陶;張文軍,一種具有金剛石涂層的硬質(zhì)合金件及其制備方法,發(fā)明專利,申請?zhí)枺篊N201610626731.6,申請日:2016-08-03,授權(quán)日:2018-12-21;
(42) 唐永炳;朱海莉;蔣春磊;申京受,含類金剛石復(fù)合涂層及其制備方法,發(fā)明專利,申請?zhí)枺篊N201611093220.9,申請日:2016-12-01,授權(quán)日:2019-04-05;
(43) 唐永炳;王陶;張文軍;李振聲,一種具有金剛石/碳化硅復(fù)合涂層的工具及其制備方法,發(fā)明專利,申請?zhí)枺篊N201611173709.7,申請日:2016-12-16,授權(quán)日:2019-06-25;
(44) 唐永炳;楊揚;秦盼盼;張文軍,一種具有類金剛石陣列的結(jié)構(gòu)件及其制備方法, 發(fā)明專利,申請?zhí)枺?CN201611185457.X,申請日:2016-12-20,授權(quán)日:2019-06-25;
(45) 唐永炳;蔣春磊;朱海莉,一種具有過渡金屬硼化物涂層的PCB用微鉆及其制備方法, 發(fā)明專利,申請?zhí)枺?CN201611193431.X,申請日:2016-12-21,授權(quán)日: 2019-06-25;
(46) 唐永炳;陳光海;蔣春磊;朱海莉;王陶,具有涂層的硬質(zhì)合金件,新型專利,申請?zhí)枺?CN201621428712.4,申請日:2016-12-24,授權(quán)日:2017-08-22;
(47) 唐永炳;谷繼騰;楊揚,一種聚晶金剛石復(fù)合片及其制備方法,發(fā)明專利,申請?zhí)枺篊N201710104716.X, 申請日:2017-02-24,授權(quán)日:2018-10-19;
(48) 唐永炳;張松全;王陶;張文軍,熱絲承載架及金剛石薄膜沉積設(shè)備,新型專利,申請?zhí)枺篊N201720203832.2,申請日:2017-03-03,授權(quán)日:2017-11-14;
(49) 唐永炳;謝友能;王陶,熱絲組件及金剛石薄膜沉積設(shè)備,新型專利,申請?zhí)枺篊N201720206816.9,申請日: 2017-03-03,授權(quán)日:2017-11-14;
(50) 唐永炳;張松全;王陶,熱絲承載架及金剛石薄膜沉積設(shè)備,發(fā)明專利,申請?zhí)枺篊N201710124589.X,申請日:2017-03-03,授權(quán)日:2019-11-05;
(51) 唐永炳;谷繼騰;楊揚,一種具有金剛石涂層的硬質(zhì)合金件及其制備方法,發(fā)明專利,申請?zhí)枺篊N201710147177.8,申請日:2017-03-13,授權(quán)日:2019-12-03;
(52) 唐永炳;張松全;王陶,一種拉絲模具內(nèi)孔制備金剛石涂層的裝置,新型專利, 申請?zhí)枺篊N201720240029.6,申請日:2017-03-13, 授權(quán)日:2017-10-10;
(53) 唐永炳;石磊;蔣春磊,一種具有富硼化鎢涂層的工件,新型專利,申請?zhí)枺篊N201720311824.X,申請日:2017-03-28,授權(quán)日:2017-12-08;
(54) 唐永炳;石磊;蔣春磊,刀片涂層夾具及涂層機,新型專利,申請?zhí)枺篊N201720323017.X,申請日:2017-03-29,授權(quán)日:2018-02-23;
(55) 唐永炳;蔣春磊;石磊,鍍膜夾具和鍍膜設(shè)備, 新型專利,申請?zhí)枺篊N201720341029.5,申請日:2017-04-01,授權(quán)日:2018-02-02;
(56) 唐永炳;石磊;蔣春磊,襯底,新型專利,申請?zhí)枺篊N201720388304.9,申請日:2017-04-11,授權(quán)日:2017-12-26;
(57) 唐永炳;張松全;王陶,具有多種涂層的拉絲模具, 新型專利,申請?zhí)枺?CN201720410260.5,申請日:2017-04-18,授權(quán)日:2017-11-14;
(58) 唐永炳;石磊;蔣春磊,涂層夾具及涂層機,新型專利, 申請?zhí)枺篊N201720440410.7,申請日:2017-04-24,授權(quán)日:2017-12-15;
(59) 唐永炳;王陶;黃磊,一種表面具有高致密納米金剛石薄膜的工件,新型專利,申請?zhí)枺篊N201720724618.1,申請日:2017-06-20,授權(quán)日:2018-03-27;
(60) 唐永炳;謝呈德;張桂河,熱交換器及NMP廢氣回收系統(tǒng),新型專利,申請?zhí)枺?CN201720752722.1,申請日:2017-06-26,授權(quán)日:2018-01-26;
(61) 唐永炳;谷繼騰;楊揚,聚晶金剛石復(fù)合片,新型專利,申請?zhí)枺篊N201720767033.8,申請日:2017-06-28,授權(quán)日:2018-01-16;
(62) 唐永炳;陳光海;蔣春磊,一種具有含鈦化合物涂層的剪線鉗,新型專利,申請?zhí)枺篊N201720824223.9,申請日:2017-07-06,授權(quán)日:2018-01-23;
(63) 唐永炳;黃磊;王陶,具有復(fù)合滲層的鈦鋁合金件、具有金剛石涂層的鈦鋁合金件,新型專利,申請?zhí)枺篊N201720958916.7,申請日:2017-08-02,授權(quán)日:2018-02-23;
(64) 唐永炳;黃磊;王陶,具有復(fù)合滲層的鈦鋁合金件、具有金剛石涂層的鈦鋁合金件,新型專利,申請?zhí)枺篊N201720959125.6,申請日:2017-08-02,授權(quán)日: 2018-04-06;
(65) 唐永炳;谷繼騰;楊揚,聚晶金剛石復(fù)合片,新型專利,申請?zhí)枺篊N201720999608.9,申請日:2017-08-08, 授權(quán)日:2018-04-06;
(66) 唐永炳;石磊;蔣春磊,立銑刀前處理夾具,新型專利, 申請?zhí)枺篊N201721021794.5,申請日:2017-08-15,授權(quán)日:2018-05-01;
(67) 唐永炳;石磊;蔣春磊,一種薄膜應(yīng)力測試用襯底夾具,新型專利,申請?zhí)枺篊N201721042157.6,申請日:2017-08-18,授權(quán)日:2018-05-01;
(68) 唐永炳;谷繼騰;楊揚,聚晶金剛石復(fù)合片,新型專利,申請?zhí)枺篊N201721043377.0,申請日:2017-08-18,授權(quán)日:2018-06-29;
(69) 唐永炳;陳光海;蔣春磊,過渡金屬硼化物-金屬復(fù)合靶材與鍍膜設(shè)備,新型專利,申請?zhí)枺篊N201721115049.7, 申請日:2017-08-30,授權(quán)日:2018-07-13;
(70) 唐永炳;蔣春磊;石磊,摻雜CaF2的TiB2涂層、CaF2和TiB2復(fù)合涂層、其制備方法和應(yīng)用及刀具,發(fā)明專利,申請?zhí)枺篊N201711019913.8,申請日:2017-10-25,授權(quán)日:2019-08-23;
(71) 唐永炳;蔣春磊;陳光海;石磊,鉗子,新型專利,申請?zhí)枺篊N201721398465.2,申請日:2017-10-25,授權(quán)日:2018-05-01;
(72) 唐永炳;蔣春磊;陳光海;石磊,樣品臺,新型專利,申請?zhí)枺篊N201721395198.3,申請日:2017-10-25, 授權(quán)日:2018-06-26;
(73) 唐永炳;楊揚;谷繼騰,制備金剛石涂層的熱絲架及裝置,新型專利,申請?zhí)枺篊N201721416517.4,申請日:2017-10-27,授權(quán)日:2018-08-28;
(74) 楊揚;唐永炳;谷繼騰,金剛石/石墨烯復(fù)合導(dǎo)熱膜和散熱系統(tǒng),新型專利,申請?zhí)枺篊N201721418398.6,申請日:2017-10-30, 授權(quán)日:2018-08-28;
(75) 楊揚;唐永炳;谷繼騰,一種硼摻雜金剛石電極,新型專利, 申請?zhí)枺篊N201721474192.5,申請日:2017-11-07,授權(quán)日:2018-07-24;
(76) 唐永炳;谷繼騰;楊揚,一種聚晶金剛石復(fù)合片,新型專利,申請?zhí)枺篊N201721579432.8,申請日:2017-11-22,授權(quán)日:2018-07-17;
(77) 唐永炳;李星星;黃磊;王陶;楊揚,一種具有金剛石薄膜的硬質(zhì)合金,新型專利,申請?zhí)枺篊N201721788799.0,申請日:2017-12-20,授權(quán)日:2018-07-24;
(78) 唐永炳;谷繼騰;楊揚;李子豪;張文軍,一種多孔摻硼金剛石電極,新型專利,申請?zhí)枺篊N201721798227.0, 申請日:2017-12-20,授權(quán)日:2018-11-09;
(79) 唐永炳;谷繼騰;楊揚;石磊,一種摻硼金剛石電極, 新型專利,申請?zhí)枺篊N201721801225.2,申請日:2017-12-20,授權(quán)日:2018-08-28;
(80) 唐永炳;蔣春磊;項磊;石磊;孟醒,碳-過渡金屬硼化物復(fù)合涂層和切削工具, 新型專利, 申請?zhí)枺篊N201721828294.2,申請日:2017-12-22,授權(quán)日: 2018-09-14;
(81) 唐永炳;黃磊;王陶;楊揚,沉積金剛石涂層的裝置,新型專利,申請?zhí)枺篊N201721839690.5,申請日:2017-12-25,授權(quán)日:2018-08-28;
(82) 唐永炳;蔣春磊;石磊;項磊;孟醒,類金剛石復(fù)合涂層及涂層工具,新型專利,申請?zhí)枺篊N201721842720.8,申請日:2017-12-25,授權(quán)日:2019-01-18;
(83) 唐永炳;黃磊;王陶;李星星;楊揚,中空微針與藥物注射裝置,新型專利,申請?zhí)枺篊N201721884312.9,申請日:2017-12-28,授權(quán)日:2019-08-02;
(84) 唐永炳;谷繼騰;楊揚;李子豪;張文軍,一種摻硼金剛石電極,新型專利,申請?zhí)枺篊N201820323056.4,申請日:2018-03-09,授權(quán)日:2019-03-15;
(85) 唐永炳;李星星;王陶;黃磊;楊揚,金屬網(wǎng)沉積金剛石涂層裝置和金屬網(wǎng)沉積金剛石涂層系統(tǒng),新型專利, 申請?zhí)枺篊N201820338175.7,申請日:2018-03-12,授權(quán)日:2019-01-08;
(86) 唐永炳;陳波;王陶;楊揚;張松全,夾持裝置及前處理裝置, 新型專利,申請?zhí)枺篊N201820369545.3,申請日:2018-03-16,授權(quán)日:2019-01-08;
(87) 唐永炳;陳波;王陶;楊揚;張松全,熱絲固定裝置及金剛石薄膜生長設(shè)備, 新型專利,申請?zhí)枺篊N201820365870.2,申請日:2018-03-16,授權(quán)日:2019-01-04;
(88) 唐永炳;李子豪;楊揚;谷繼騰;張文軍,一種多孔硼氮鎳共摻雜金剛石電極和電化學(xué)脫鹵工作站,新型專利, 申請?zhí)枺篊N201820636156.2,申請日:2018-04-28,授權(quán)日:2019-04-02;
(89) 唐永炳;陳波;王陶;楊揚,刀具清洗輔助裝置及刀具清洗裝置,新型專利,申請?zhí)枺篊N201820654825.9,申請日:2018-05-03,授權(quán)日:2019-06-04;
(90) 唐永炳;谷繼騰;楊揚;李子豪;張文軍,摻硼金剛石/石墨復(fù)合電極、雙電池反應(yīng)器,新型專利,申請?zhí)枺篊N201820695741.X,申請日:2018-05-10,授權(quán)日: 2019-05-14;
(91) 唐永炳;陳波;王陶;楊揚,熱絲夾具和熱絲沉積設(shè)備,新型專利,申請?zhí)枺篊N201820707020.6,申請日:2018-05-11,授權(quán)日: 2019-02-01;
(92) 唐永炳;李子豪;楊揚;谷繼騰;張文軍,一種高導(dǎo)熱結(jié)構(gòu), 新型專利,申請?zhí)枺篊N201820740142.5,申請日:2018-05-17,授權(quán)日:2019-03-15;
(93) 唐永炳;蔣春磊;石磊,具有顏色層的金剛石涂層刀具及加工設(shè)備, 新型專利, 申請?zhí)枺篊N201820872682.9,申請日:2018-06-06,授權(quán)日:2019-05-03;
(94) 唐永炳;陳波;王陶;楊揚,熱絲夾具與熱絲沉積設(shè)備,新型專利,申請?zhí)枺篊N201820909937.4,申請日:2018-06-12, 授權(quán)日:2019-01-29;
(95) 唐永炳;陳波;王陶;楊揚,刀具清洗風(fēng)干裝置及刀具清洗風(fēng)干系統(tǒng),新型專利,申請?zhí)枺篊N201821126381.8,申請日:2018-07-11,授權(quán)日:2019-03-29;
(96) 唐永炳;陳波;楊揚;王陶,刀具承載臺及應(yīng)用其的刀具加工系統(tǒng), 新型專利,申請?zhí)枺篊N201821122636.3,申請日:2018-07-13,授權(quán)日:2019-03-29;
(97) 唐永炳;陳波;楊揚;王陶,刀具承載臺及刀具加工系統(tǒng),新型專利, 申請?zhí)枺篊N201821117312.0,申請日: 2018-07-13,授權(quán)日:2019-03-29;
(98) 唐永炳;陳波;楊揚;王陶,刀具承載臺及刀具加工裝置,新型專利, 申請?zhí)枺篊N201821117682.4,申請日:2018-07-13,授權(quán)日:2019-03-29;
(99) 唐永炳;陳波;楊揚;王陶,刀具清洗裝置及刀具清洗系統(tǒng),新型專利,申請?zhí)枺篊N201821119492.6,申請日:2018-07-13,授權(quán)日:2019-03-29;
(100) 唐永炳;陳波;楊揚;王陶,用于片材雙面沉積涂層的夾具及沉積裝置,新型專利, 申請?zhí)枺篊N201821137629.0, 申請日: 2018-07-16,授權(quán)日:2019-03-29;
(101) 唐永炳;陳波;王陶;孟醒,刀具夾具及刀具清洗裝置,新型專利,申請?zhí)枺篊N201821400737.2,申請日:2018-08-28,授權(quán)日:2019-04-26;
(102) 唐永炳;陳波;王陶;孟醒,刀粒清洗板及刀粒清洗裝置,新型專利,申請?zhí)枺篊N201821706584.4,申請日:2018-10-19,授權(quán)日:2019-08-23;
(103) 唐永炳;陳波;王陶;楊揚,用于片材沉積涂層的夾具及沉積裝置,新型專利,申請?zhí)枺篊N201821704780.8,申請日:2018-10-19,授權(quán)日:2019-08-13;
(104) 唐永炳;孟醒;陳波;王陶,片材夾具及沉積設(shè)備,新型專利,申請?zhí)枺篊N201821704778.0,申請日:2018-10-19,授權(quán)日:2019-08-02;
(105) 唐永炳;孟醒;陳波;王陶,用于在片材上沉積摻雜涂層的夾具及沉積裝置,新型專利,申請?zhí)枺篊N201821708390.8,申請日:2018-10-19,授權(quán)日:2019-08-02;
(106) 唐永炳;陳波;王陶;孟醒,用于片材連續(xù)沉積涂層的夾具及沉積裝置,新型專利,申請?zhí)枺篊N201821708429.6,申請日:2018-10-19,授權(quán)日:2019-08-02;
(107) 唐永炳;徐陽;王陶;陳波;李星星;黃磊,沖裁裝置,新型專利,申請?zhí)枺篊N201822090531.0,申請日:2018-12-12,授權(quán)日:2019-08-23;
(108) 唐永炳;王星永;王陶;黃磊;李星星,熱絲化學(xué)氣相沉積用基片臺及熱絲化學(xué)氣相沉積裝置,新型專利,申請?zhí)枺篊N201822113118.1,申請日:2018-12-14,授權(quán)日:2019-08-23;
(109) 唐永炳;黃磊;王陶;王星永,鈦合金復(fù)合材料、外科植入物和醫(yī)療器械, 新型專利,申請?zhí)枺篊N201822129956.8,申請日:2018-12-18, 授權(quán)日:2019-08-23;
(110) 唐永炳;周小龍,薄膜涂層色度分析設(shè)備和薄膜涂層分類系統(tǒng),新型專利,申請?zhí)枺篊N201822143468.2, 申請日:2018-12-19,授權(quán)日:2019-10-18
(111) 叢洪濤, 唐永炳,成會明,一種氮化鋁增強金屬鋁的雙納米復(fù)合材料,發(fā)明專利,申請?zhí)枺?00410050349.2, 授權(quán)公告號:CN100370047C,授權(quán)日:2008-2-20;
(112) 叢洪濤, 唐永炳,成會明, 一種納米氮化鋁/納米鋁雙納米復(fù)合材料的制備方法,發(fā)明專利,申請?zhí)枺?00410050348.8, 授權(quán)公告號:CN100496818C,授權(quán)日:2009-6-10;
(113) 叢洪濤,唐永炳,成會明, 一種電子封裝復(fù)合材料, 發(fā)明專利,申請?zhí)枺?200510046366.3, 授權(quán)公告號:CN100577768C,授權(quán)日:2010-1-6;
(114) 叢洪濤,唐永炳,成會明, 一種納米棒陣列材料, 發(fā)明專利,申請?zhí)枺?00510046365.9, 授權(quán)公告號:CN100413780C,授權(quán)日:2008-8-27;
(115) 叢洪濤, 唐永炳, 成會明, 一種刻蝕基板法外延定向生長AlN 納米片網(wǎng)格的方法, 發(fā)明專利,申請?zhí)枺?00710010519.8, 授權(quán)公告號:CN100578736C,授權(quán)日:2010-1-6;
(116) 叢洪濤, 唐永炳, 成會明, 一種高強度、低熱膨脹的AlN 納米線和Al復(fù)合材料, 發(fā)明專利,申請?zhí)?200710111662.6, 授權(quán)公告號:CN101255538B,授權(quán)日:2011-7-20;
(117) 叢洪濤, 唐永炳, 成會明, 一種催化劑“種子”法制備準(zhǔn)一維摻雜AlN 陣列的方法, 發(fā)明專利,申請?zhí)枺?00710010518.3, 授權(quán)公告號:CN101255064B,授權(quán)日:2012-8-22;
(118) 李振聲,李述湯,唐永炳,馮敏強,陳昭儀, 多孔基底與一維納米材料的復(fù)合材料及其制備方法、其表面改性的復(fù)合材料及制備方法, 發(fā)明專利,申請?zhí)枺?01110241568.9, 授權(quán)公告號:CN102949981B,授權(quán)日:2015-9-30;
(119) C.S. Lee, S.T. Lee, Y.B. Tang, M.K. Fung, composite of porous substrate and one-dimensional nanomatrial and method for preparing the same, surface-modified composite and method for preparing the same, 美國發(fā)明專利13/585,707,授權(quán)日:2013-2-21。
學(xué)術(shù)兼職
學(xué)術(shù)兼職
2019.08~2023.07,廣東省電池行業(yè)協(xié)會理事會副理事長
2020.04-2023.04,光電材料器件網(wǎng)專家委員會副理事長
2018.12.10,被Elsevier出版社聘為《Green Energy&Environment》期刊青年編委
2019.06.01,《儲能科學(xué)與技術(shù)》編委
2015.11,第五屆深圳市真空學(xué)會理事會理
2017.06.01,深圳市電源技術(shù)學(xué)會理事
2016.09.01~2017.09.01,中國機械工程學(xué)會表面工程分會青工委委員會委員理事
2014.10.17,International Advisory Panel Member of Materials Research Express
2014.06.17,Associate Editor of Journal of Nanoscience Letters
人物訪談
唐永炳:讓電池再輕點,再持久點
2017-05-15來源:科技日報 劉傳書 丁寧寧
中國科學(xué)院深圳先進技術(shù)研究院集成所功能薄膜材料研究中心唐永炳研究員及其團隊成功研發(fā)出一種新型高性能、低成本的鉀型雙離子電池技術(shù),該成果發(fā)表于國際材料著名期刊《先進材料》上。
2007年,他在中科院沈陽金屬所獲得博士學(xué)位,憑借優(yōu)異的學(xué)術(shù)成績被導(dǎo)師成會明院士推薦進入香港城市大學(xué)李述湯院士的實驗室,這一干就是六年。
2013年8月,在聽聞與香港一江之隔的深圳成立了一個國家級的科研機構(gòu),在這里既可以從事科研,又極力推崇產(chǎn)業(yè)化應(yīng)用,還可以指導(dǎo)研究生。他離開香港,來到基礎(chǔ)和產(chǎn)業(yè)化環(huán)境更好的中科院深圳先進院。