太陽(yáng)能轉(zhuǎn)換與存儲(chǔ)課題組
文章發(fā)布日期:2024-06-20 發(fā)布者:
太陽(yáng)能轉(zhuǎn)換與存儲(chǔ)課題組
1、團(tuán)隊(duì)組成
團(tuán)隊(duì)帶頭人:肖堯明,博士,教授(破格)、博導(dǎo)(山西大學(xué)),山西省“三晉青年學(xué)者”特聘教授,山西省“三晉英才”支持計(jì)劃青年優(yōu)秀人才,泉州市“桐江學(xué)者獎(jiǎng)勵(lì)計(jì)劃”特聘教授。主要研究方向?yàn)?/span>鈣鈦礦太陽(yáng)能電池材料與器件、太陽(yáng)能轉(zhuǎn)換與存儲(chǔ)一體器件。截至2023年9月,在Adv. Mater.、 Angew. Chem. Int. Ed.、J. Mater. Chem. A、 J. Power Sources等國(guó)際著名學(xué)術(shù)刊物上共發(fā)表SCI論文140余篇,其中第一作者或通訊作者中國(guó)科學(xué)院一區(qū)SCI論文46篇(其中6篇先后被評(píng)為ESI“高被引論文”,2篇先后被評(píng)為ESI“熱點(diǎn)論文”),二區(qū)論文30篇,SCI總引4500余次,SCI他引4200余次,H-index=42。
團(tuán)隊(duì)成員:王麗丹,博士,副教授,福建省教育廳新世紀(jì)人才。主要研究方向?yàn)闊o機(jī)鈣鈦礦光電探測(cè)器。在Nanoscale、Solar Energy Materials & Solar Cells、Physical Chemistry Chemical Physics 和 Applied Physics Letters等期刊發(fā)表SCI論文25篇,中國(guó)科學(xué)院一區(qū)SCI論文5篇。
團(tuán)隊(duì)成員:許云鵬,博士,講師。主要研究方向?yàn)?/span>酸-堿復(fù)合水系電池。在Angew. Chem. Int. Ed.和Applied Surface Science等期刊發(fā)表SCI論文4篇,中國(guó)科學(xué)院一區(qū)SCI論文3篇。
2、科研項(xiàng)目
(1)準(zhǔn)單晶鈣鈦礦薄膜的原位生長(zhǎng)及大面積光伏器件戶外性能研究,福建省自然科學(xué)基金杰出青年項(xiàng)目,2020.8-2023.7,20萬(wàn),在研;
(2)無機(jī)鈣鈦礦材料的制備及其在光伏器件中的應(yīng)用,福建省教育廳新世紀(jì)人才項(xiàng)目,2018.6-2021.6,11萬(wàn),在研;
(3)雜化鈣鈦礦材料的制備及其在光電倍增型探測(cè)器中的應(yīng)用,福建省科技廳自然科學(xué)基金面上項(xiàng)目,2019.4-2022.4,8萬(wàn),在研;
(4)鈣鈦礦復(fù)合結(jié)構(gòu)的制備及光電性能研究,泉州市科技局科技計(jì)劃項(xiàng)目,2019.6-2022.6,20萬(wàn),在研;
(5)準(zhǔn)單晶鈣鈦礦薄膜的原位生長(zhǎng)及其光伏性能研究,泉州師范學(xué)院科技計(jì)劃項(xiàng)目(人才啟動(dòng)),2020.10-2023.9,50萬(wàn),在研;
(6)無機(jī)鈣鈦礦材料的制備及其在光伏器件中的應(yīng)用,泉州師范學(xué)院科技計(jì)劃項(xiàng)目(人才啟動(dòng))2018.4-2021.4,20萬(wàn),在研;
(7)柔性錫基鈣鈦礦太陽(yáng)能電池的原位構(gòu)建及其光電性能研究,國(guó)家自然科學(xué)基金青年基金,2016.1-2018.12,20萬(wàn)元,已結(jié)題;
(8)基于氧化鋅納米棒陣列的雜化鈣鈦礦太陽(yáng)能電池研究,國(guó)家自然科學(xué)基金青年項(xiàng)目,2016.1-2018.12,25.2萬(wàn),已結(jié)題;
(9)新型分解環(huán)境污染物高效催化劑材料及性能評(píng)價(jià),廣東省測(cè)試分析研究所橫向課題,2017.1-2018.12,16萬(wàn),已結(jié)題;
(10)柔性有機(jī)金屬混合鹵化鈣鈦礦太陽(yáng)能電池的制備及其性能研究,山西省科技廳自然科學(xué)基金面上項(xiàng)目,2015.1-2017.12,3萬(wàn),已結(jié)題;
(11)基于雙功能p-型導(dǎo)電聚合物的有機(jī)金屬混合鹵化鈣鈦礦太陽(yáng)能電池的研究,山西省教育廳高??萍紕?chuàng)新項(xiàng)目,2014.1-2016.12,4萬(wàn),已結(jié)題。
3、代表性研究成果
(1)SCI論文:
1. A large-area light-weight dye-sensitized solar cell based on all titanium substrates with an efficiency of 6.69% outdoors, Advanced Materials 2012, 24, 1884-1888.
2. Interconnected ternary MIn2S4 (M = Fe, Co, Ni) thiospinels nanosheets array: a type of efficient Pt-free counter electrodes for the dye-sensitized solar cells,Angewandte Chemie International Edition2017, 56, 9146-9150.
3. An efficient and stable perovskite solar cell with suppressed defectsby employing dithizone as a lead indicator,Angewandte Chemie International Edition2020, 132, 21593-21597.
4. High-voltage Rechargeable Alkali-acid Zn-PbO2 Hybrid Battery, Angewandte Chemie International Edition, 2020, 59: 23593-23597.
5. Hybrid Acid/alkali All Covalent Organic Frameworks Battery, Angewandte Chemie International Edition, 2023, DOI: 10.1002/anie.202215584.
6. Potassium nitrilotriacetate as a multifunctional modifier of the buried interface for hysteresisreduced perovskite solar cells, Chem. Commun., 2022, 58, 5638-5641.
7. Novel inorganic perovskite quantum dots for photocatalysis. Nanoscale2017, 9, 12032-12038.
8. High efficient inverted solar cells based on perovskite grown mediated by CuSCN nanostructures. Nanoscale2017, 9, 6136-6144.
9. Use of Organic Bulk-heterojunction Solar Cells as Selective Contacts in Wide Band-Gap Perovskite Solar Cells: Advantages and Limitations, Journal of Materials Chemistry A, 2021,9, 13979-13985.
10. Electrospun lead-doped titanium dioxide nanofibers and the in situ preparation perovskite-sensitized photoanodes for use in high performance perovskite solar cells. Journal of Materials Chemistry A 2014, 2, 16856-16862.
11. Preparation of high performance perovskite-sensitized nanoporous titanium dioxide photoanodes by in situ method for use in perovskite solar cells. Journal of Materials Chemistry A 2014, 2, 16531-16537.
12. High performance of Pt-free dye-sensitized solar cells based on two-step electropolymerized polyaniline counter electrodes. Journal of Materials Chemistry A 2014, 2, 3452-3460.
13. A high performance Pt-free counter electrode of nickel sulfide/multiwall carbon nanotubes/titanium used in dye-sensitized solar cells. Journal of Materials Chemistry A 2013, 1, 13885-13889.
14. Pulse electrodeposition of CoS on the MWCNT/Ti as a high performance counter electrode for the Pt-free dye-sensitized solar cell. Journal of Materials Chemistry A 2013, 1, 1289-1295.
15. Pulseelectropolymerization of high performance PEDOT/MWCNT counter electrodes for Pt-free dye-sensitized solar cells, Journal of Materials Chemistry 2012, 22, 19919-19925.
(2)授權(quán)國(guó)家專利:
1. 一種鈣鈦礦太陽(yáng)能電池光陽(yáng)極的原位制備方法,發(fā)明專利,ZL201410244353.6
2. 一種太陽(yáng)能電池多功能薄膜的制備方法,發(fā)明專利,ZL201610317179.2
3. 一種空腔限域原位生長(zhǎng)大面積準(zhǔn)單晶鈣鈦礦薄膜的制備方法,發(fā)明專利,ZL202010329361.6
4. 大面積準(zhǔn)單晶鈣鈦礦薄膜密閉循環(huán)制備裝置,實(shí)用新型,ZL202020598652.0
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