研究成果
序號(hào) |
項(xiàng)目名稱 |
金額 |
1 |
國(guó)家自然科學(xué)基金2項(xiàng) |
86萬(wàn)元 |
2 |
人社部專業(yè)技術(shù)人才知識(shí)更新工程高級(jí)研修項(xiàng)目 |
19萬(wàn)元 |
3 |
中央引導(dǎo)地方科技發(fā)展專項(xiàng)資金 |
80萬(wàn)元 |
4 |
江西省重點(diǎn)研發(fā)計(jì)劃2項(xiàng)(1項(xiàng)參與) |
50萬(wàn)元 |
5 |
江西省自然科學(xué)基金重點(diǎn)項(xiàng)目1項(xiàng) | 50萬(wàn)元 |
6 |
江西省自然科學(xué)基金杰青項(xiàng)目1項(xiàng) | 20萬(wàn)元 |
7 |
江西省工信委“納米材料及相關(guān)技術(shù)公共服務(wù)平臺(tái)” | 50萬(wàn)元 |
8 |
南昌市院士工作站 | 150萬(wàn)元 |
9 |
南昌市納米碳材料應(yīng)用技術(shù)重點(diǎn)實(shí)驗(yàn)室 | 20萬(wàn)元 |
10 |
寶泰隆共建石墨烯應(yīng)用技術(shù)聯(lián)合工程中心 | 1000萬(wàn)元 |
二、論文發(fā)表
序號(hào) |
論文題目 |
雜志 |
1 |
Through-thickness thermal conductivity enhancement of graphite film/epoxy composite via duration acidizing modification |
Applied Surface Science |
2 |
Direct spinning of high-performance graphene fiber supercapacitor with a three-ply core-sheath structure |
Carbon |
3 |
Nanoparticle intercalation-modulated stretchable conductive graphene fibers with combined photoelectric properties |
Carbon |
4 |
Rational Design of Hierarchical Titanium Nitride@Vanadium Pentoxide Core-shell Heterostructure Fibrous Electrodes for High-performance 1.6 V Non-polarity Wearable Supercapacitors |
ACS Applied Material&Interfaces |
5 |
Growth of boron nitride nanotubes from magnesium diboride catalysts |
Nanoscale |
6 |
Hot pressing-induced alignment of hexagonal boron nitride in SEBS elastomer for superior thermally conductive composites |
RSC Advances |
7 |
One-Step in Situ Ball Milling Synthesis of Polymer-Functionalized Few-Layered Boron Nitride and Its Application in High Thermally Conductive Cellulose Composites |
ACS Applied Nano Materials |
8 |
Flexible Quasi-Solid-State 2.4 V Aqueous Asymmetric Microsupercapacitors with Ultrahigh Energy Density |
Journal of Materials Chemistry A |
9 |
High-performance flexible all-solid-state aqueous rechargeable Zn–MnO2 microbatteries integrated with wearable pressure sensors |
Journal of Materials Chemistry A |
10 |
Metal−Organic Framework Derived Spindlelike Carbon Incorporated αFe2O3 Grown on Carbon Nanotube Fiber as Anodes for High-Performance Wearable Asymmetric Supercapacitors |
ACS Nano |
11 |
3D Printing Fiber Electrodes for an All-Fiber Integrated Electronic Device via Hybridization of an Asymmetric Supercapacitor and a Temperature Sensor |
Advanced Science |
12 |
An integrated strategy towards the high-yield fabrication of soluble boron nitride nanosheets |
Chemical Engineering Journal |
13 |
High Performance Quasi-Solid-State Flexible Aqueous Rechargeable Ag-Zn Battery Based on Metal-Organic-Framework Derived Ag Nanowires |
ACS Energy Letters |
14 |
All Hierarchical Core–Shell Heterostructures as Novel Binder-Free Electrode Materials for Ultrahigh-Energy-Density Wearable Asymmetric Supercapacitors |
Advanced Science |
15 |
Flexible All-Solid-State Fiber-Shaped Ni-Fe Batteries with High Electrochemical Performance |
Journal of Materials Chemistry A |
16 |
Large improvement of thermal transport and mechanical performance of polyvinyl alcohol composites based on interface enhanced by SiO2 nanoparticle- modified-hexagonal boron nitride |
Composites Science and Technology |
17 |
An ultra-high endurance and high-performance quasi-solid-state fiber-shaped Zn-Ag20 battery to harvest wind energy |
Journal of Materials Chemistry A |
18 |
Highly Efficient Mass Production of Boron Nitride Nanosheets via a Borate Nitridation Method |
The Journal of Physical Chemistry C |
19 |
All-Metal-Organic Framework-Derived Battery Materials on Carbon Nanotube Fibers for Wearable Energy-Storage Device |
Advanced Science |
20 |
Large-scale fabrication of boron nitride nanotubes and their application in thermoplastic polyurethane based composite for improved thermal conductivity |
Ceramics International |
21 |
Enhanced thermal conductivity of polyurethane composites via engineering small/large sizes interconnected boron nitride nanosheets |
Composites Science and Technology |
22 |
Duplex printing of all-in-one integrated electronic devices for temperature monitoring |
Journal of Materials Chemistry A |
23 |
Hierarchical NiCoP nanosheet arrays with enhanced electrochemical properties for high-performance wearable hybrid capacitors |
Journal of Alloys and Compounds |
24 |
Ultra-High Endurance and High-Performance Quasi-Solid-State Fiber-Shaped Zn-Ag2O Battery to Harvest Wind Energy |
Journal of Materials Chemistry A |
25 |
Fully Solar-Powered Uninterrupted Overall Water-Splitting Systems |
advanced functional materials |
26 |
Gas infiltration of bromine to enhance the electrical conductivity of carbon nanotube fibers |
Materials & Design |
27 |
Merge multiple carbon nanotube fibers into a robust yarn |
Carbon |
三、申請(qǐng)專利
序號(hào) |
專利號(hào) |
專利名稱 |
專利類型 |
1 |
201710957538.5 |
一種多維度導(dǎo)電劑復(fù)合導(dǎo)電漿料的制備方法 |
發(fā)明專利 |
2 |
201710957540.2 |
一種雙電層超級(jí)電容器電極漿料的制備方法 |
發(fā)明專利 |
3 |
201710957541.7 |
一種雙電層超級(jí)電容器有機(jī)系電極漿料的制備方法 |
發(fā)明專利 |
4 |
201710371685.4 |
一種具有層次孔高石墨化程度碳納米球的制備方法 |
發(fā)明專利 |
5 |
201710371652.X |
一種具有氧化石墨烯褶皺形貌的碳納米片的制備方法 |
發(fā)明專利 |
6 |
201820237832.9 |
一種新型立式石英內(nèi)膽 |
實(shí)用新型(授權(quán)) |
7 |
201820237831.4 |
一種去除納米碳材料中鐵雜質(zhì)的裝置 |
實(shí)用新型(授權(quán)) |
8 |
201810137683.3 |
一種用于鋰離子電池正極材料的碳納米管導(dǎo)電劑及其制備方法 |
發(fā)明專利 |
9 |
201810137678.2 |
一種用于鋰離子電池負(fù)極材料的碳納米管導(dǎo)電劑漿料及其制備方法 |
發(fā)明專利 |
10 |
201810439815.8 |
一種基于銀納米線的皮芯結(jié)構(gòu)復(fù)合纖維及其制備方法 |
發(fā)明專利 |
11 |
201810439029.8 |
一種水性PTC納米碳電熱涂料及其制備方法 |
發(fā)明專利 |
12 |
201810439028.3 |
一種新型水性PTC電熱涂料及其制備方法 |
發(fā)明專利 |
13 |
201810665320.7 |
一種高質(zhì)量、少缺陷、結(jié)構(gòu)均勻的石墨烯的制備方法 |
發(fā)明專利 |
14 |
201810566620.X |
一種石墨烯復(fù)合鋰電導(dǎo)電漿料的制備方法 |
發(fā)明專利 |
15 |
201810869651.2 |
一種用于鋰離子電池正極材料的石墨烯復(fù)合導(dǎo)電劑的制備方法 |
發(fā)明專利 |
16 |
201810869643.8 |
一種薄層石墨烯漿料的制備方法 |
發(fā)明專利 |
17 |
201810843386.0 |
纖維型雙股螺旋結(jié)構(gòu)柔性石墨烯纖維超級(jí)電容器、制法及系統(tǒng) |
發(fā)明專利 |
18 |
201810844617.X |
芯鞘型柔性柔性石墨烯纖維超級(jí)電容器及其電致還原制備方法 |
發(fā)明專利 |
19 |
201810844655.5 |
纖維型平行結(jié)構(gòu)柔性石墨烯纖維超級(jí)電容器、制法及系統(tǒng) |
發(fā)明專利 |
20 |
201811113899.2 |
一種石墨烯水性復(fù)合漿料綠色制備方法 |
發(fā)明專利 |