發(fā)明公開:
[1]馬保軍,and 張璇. "一種復(fù)合金屬氧化物催化劑的制備方法及應(yīng)用." CN117983199A. 2024-05-07.
[2]馬保軍,and 張婷園. "一種復(fù)合光催化劑及其制備與應(yīng)用." CN117960207A. 2024-05-03.
[3]馬保軍,and 吳永钚. "一種CdZrOx/MoS2復(fù)合催化劑的制備及其應(yīng)用." CN117960211A. 2024-05-03.
[4]馬保軍,and 陳琳. "一種復(fù)合催化劑及其制備和應(yīng)用." CN117960227A. 2024-05-03.
[5]馬保軍,and 韓鵬. "一種Mo2C(TiO2/CdS)復(fù)合光催化劑及其制備和應(yīng)用." CN116351447A. 2023-06-30.
[6]馬保軍,and 康瓊. "一種摻雜In元素的固溶體In-ZnZrOx催化劑的制備及其應(yīng)用." CN115845830A. 2023-03-28.
[7]王薇, et al. "一種FeZn基三維自支撐電極的制備及在電催化二氧化碳還原中的應(yīng)用." CN115418664A. 2022-12-02.
[8]馬保軍,and 羅麗. "一種Zn-Ni5P4或Ni5P4助催化劑及制備和應(yīng)用." CN115254145A. 2022-11-01.
[9]王薇, 王蒙恩,and 馬保軍. "一種FeV-LDHs的電催化劑及制備和應(yīng)用." CN115198286A. 2022-10-18.
[10]馬保軍,and 文興. "一種Ta3N5/CdS復(fù)合光催化劑及其制備和應(yīng)用." CN114602506A. 2022-06-10.
[11]馬保軍, 王佳,and 王薇. "一種Ru/N-FeVO電催化劑及制備應(yīng)用." CN114540872A. 2022-05-27.
[12]馬保軍, 田鑫,and 黨鈺瑩. "一種ZnZrOx/MoS2復(fù)合催化劑及其制備和應(yīng)用." CN113797939A. 2021-12-17.
[13]馬保軍,and 宋旭東. "用于光催化制氫的系統(tǒng)與方法." CN113603055A. 2021-11-05.
[14]馬保軍,and 馬小蓮. "一種摻雜Zn元素的固溶體催化劑及制備和應(yīng)用." CN113209958A. 2021-08-06.
[15]馬保軍, 張四鵬,and 王薇. "一種片狀N-FeV電催化劑及其制備與應(yīng)用." CN113215606A. 2021-08-06.
[16]馬保軍,and 張佳偉. "用于光催化分解水制氫的復(fù)合光催化劑及其制備和應(yīng)用." CN113198504A. 2021-08-03.
[17]馬保軍,and 李欣. "一種復(fù)合催化劑及其制備和應(yīng)用." CN111905754A. 2020-11-10.
[18]馬保軍,and 李欣. "一種復(fù)合催化劑及其制備和應(yīng)用." CN111686793A. 2020-09-22.
[19]馬保軍, 馮力,and 林克英. "一種花狀WC助催化劑制備及其應(yīng)用." CN111468152A. 2020-07-31.
[20]馬保軍, 馮力,and 林克英. "一種(Ru/WC)或(Pd/WC-P)復(fù)合助催化劑及制備和應(yīng)用." CN111468153A. 2020-07-31.
[21]馬保軍,and 李德康. "一種具有片層結(jié)構(gòu)Mo2C助催化劑及制備和應(yīng)用." CN111468151A. 2020-07-31.
[22]馬保軍, 王曉燕,and 林克英. "一種光催化分解水的復(fù)合光催化劑及其制備和應(yīng)用." CN108636434A. 2018-10-12.
[23]馬保軍, 王曉燕,and 林克英. "一種單質(zhì)鍺的制備方法." CN108486391A. 2018-09-04.
[24]馬保軍, 張瑞生,and 林克英. "一種煤基W/WC復(fù)合催化劑及其制備方法." CN108126722A. 2018-06-08.
[25]馬保軍, 贠紅娟,and 林克英. "一種WO3可見光光催化劑及其制備和應(yīng)用." CN107020080A. 2017-08-08.
[26]馬保軍, 贠紅娟,and 林克英. "一種可見光光催化劑WO3及WO3復(fù)合涂料與制備和應(yīng)用." CN106975352A. 2017-07-25.
[27]馬保軍, et al. "六方棒狀Mo2N的制備和六方棒狀Mo2N及應(yīng)用." CN106006582A. 2016-10-12.
[28]馬保軍, et al. "一種CoP/ TiO2復(fù)合光催化劑及其制備和應(yīng)用." CN105903482A. 2016-08-31.
[29]馬保軍, et al. "一種CoP/CdS復(fù)合光催化劑及其制備和應(yīng)用." CN105854910A. 2016-08-17.
[30]馬保軍, et al. "離子液體與堿液聯(lián)合預(yù)處理生物質(zhì)的方法." CN105779525A. 2016-07-20.
[31]畢淑嫻, et al. "一種磁性磺化蘭炭復(fù)合材料及其制備方法與應(yīng)用." CN105126752A. 2015-12-09.
[32]馬保軍, et al. "一種Mo2C/CdS復(fù)合光催化劑及其制備和應(yīng)用." CN104959158A. 2015-10-07.
[33]馬保軍, et al. "一種Mo2N/CdS復(fù)合光催化劑及其制備和應(yīng)用." CN104959160A. 2015-10-07.
[34]馬保軍, et al. "一種新型石墨烯基Mo2N-Mo2C/CdS復(fù)合光催化劑及其制備和應(yīng)用." CN104923278A. 2015-09-23.
[35]馬保軍, et al. "一種TiO2/AC-SO42-固體酸光催化劑及其應(yīng)用." CN104492463A. 2015-04-08.
[36]李燦,馬保軍,應(yīng)品良。一種光催化制氫活性快速評價的多通道反應(yīng)裝置,申請?zhí)? 200710099875.1,公開號: CN101315357
實(shí)用新型:
[1]馬保軍, 宋旭東. 用于光催化制氫的系統(tǒng)[P]. 寧夏回族自治區(qū): CN216155478U, 2022-04-01.
發(fā)明授權(quán):
[1]馬保軍, 羅麗. 一種Zn-Ni5P4或Ni5P4助催化劑及制備和應(yīng)用[P]. 寧夏回族自治區(qū): CN115254145B, 2024-02-27.
[2]馬保軍, 文興. 一種Ta3N5/CdS復(fù)合光催化劑及其制備和應(yīng)用[P]. 寧夏回族自治區(qū): CN114602506B, 2024-01-09.
[3]馬保軍, 田鑫, 黨鈺瑩. 一種ZnZrOx/MoS2復(fù)合催化劑及其制備和應(yīng)用[P]. 寧夏回族自治區(qū): CN113797939B, 2024-01-05.
[4]馬保軍, 王佳, 王薇. 一種Ru/N-FeVO電催化劑及制備應(yīng)用[P]. 寧夏回族自治區(qū): CN114540872B, 2023-12-22.
[5]馬保軍, 李欣. 一種復(fù)合催化劑及其制備和應(yīng)用[P]. 寧夏回族自治區(qū): CN111686793B, 2023-04-18.
[6]馬保軍, 馮力, 林克英. 一種(Ru/WC)或(Pd/WC-P)復(fù)合助催化劑及制備和應(yīng)用[P]. 寧夏回族自治區(qū): CN111468153B, 2023-02-28.
[7]馬保軍, 馬小蓮. 一種摻雜Zn元素的固溶體催化劑及制備和應(yīng)用[P]. 寧夏回族自治區(qū): CN113209958B, 2023-02-24.
[8]馬保軍, 張佳偉. 用于光催化分解水制氫的復(fù)合光催化劑及其制備和應(yīng)用[P]. 寧夏回族自治區(qū): CN113198504B, 2022-12-23.
[9]馬保軍, 楊旭. Ni-Rh/αβ-Mo-XC復(fù)合催化劑及制備和應(yīng)用[P]. 寧夏回族自治區(qū): CN109954507B, 2021-09-10.
[10]馬保軍, 徐豪杰, 李杰, 林克英, 劉萬毅. 一種Mo2C/CdS復(fù)合光催化劑及其制備和應(yīng)用[P]. 寧夏回族自治區(qū): CN104959158B, 2021-02-09.
[11]馬保軍, 李杰, 徐豪杰, 劉萬毅, 林克英. 一種Mo2N/CdS復(fù)合光催化劑及其制備和應(yīng)用[P]. 寧夏回族自治區(qū): CN104959160B, 2021-02-09.
[12]馬保軍, 張瑞生, 林克英. 一種煤基W/WC復(fù)合催化劑及其制備方法[P]. 寧夏回族自治區(qū): CN108126722B, 2021-02-09.
[13]馬保軍, 王曉燕, 林克英. 一種光催化分解水的復(fù)合光催化劑及其制備和應(yīng)用[P]. 寧夏回族自治區(qū): CN108636434B, 2020-12-01.
[14]馬保軍, 劉紅霞, 林克英, 劉萬毅. 一種CoP/CdS復(fù)合光催化劑及其制備和應(yīng)用[P]. 寧夏回族自治區(qū): CN105854910B, 2018-11-20.
[15]馬保軍, 劉紅霞, 林克英, 劉萬毅. 一種CoP/TiO2復(fù)合光催化劑及其制備和應(yīng)用[P]. 寧夏回族自治區(qū): CN105903482B, 2018-09-28.
發(fā)表英文論文:
[1]Lin, Keying; Ma, Xiaolian; Song, Lingxiao; Tian, Jinfeng; Zhan, Haijuan; Wang, Wei; Gao, Xinhua; Ma, Baojun*.CO2 methanation over αβ-MoXC catalyst: Effects of phase heterojunction.Chemical Engineering Science, 2023, 282: 119166.
[2]Ma, Xiaolian; Li, Xin; Yang, Xu; Tian, Xin; Zhan, Haijuan; Wang, Wei; Lv, Peng*; Ma, Baojun*.Zn-CdZrOx solid solution catalysts for hydrogenation of CO2 to methanol.Fuel, 2023, 346: 128376.
[3]Tian, Jinfeng; Wen, Xing; Hu, Wenfeng; Luo, Li; Wang, Wei; Lin, Keying; Zhan, Haijuan; Ma, Baojun*.A Highly Efficient Composite Catalyst (Au/Ta3N5)/CdS for Photocatalytic Hydrogen Production.Catalysts, 2023, 13(7): 1103.
[4]Wang, Xuandong; He, Jie; Chen, Xin; Ma, Baojun; Zhu, Mingshan*.Metal halide perovskites for photocatalytic CO2 reduction: An overview and prospects.Coordination Chemistry Reviews, 2023, 482: 215076.
[5]Dang, Yuying; Tian, Jinfeng; Wang, Wei; Ma, Baojun*.Insight into the whole characteristics of (Pd/WP)/CdS for photocatalytic hydrogen evolution.Journal of Colloid and Interface Science, 2023, 633: 649-656.
[6]Li Luo, Jinfeng Tian, Wenfeng Hu, Peng Han, Wei Wang,Baojun Ma*, A new and highly efficient co-catalyst Zn-Ni5P4for photocatalytic H2 evolution with the reduced capacitance via Zn doping, Applied Catalysis B: Environmental, 2023, 321:122008-122015.
[7]Hu, Wenfeng; Zhang, Jiawei; Tian, Jinfeng; Dang, Yuying; Wang, Wei; Zhan, Haijuan; Ma, Baojun*, Greatly enhanced photocatalytic hydrogen production on CdS/(Pt/g-C3N4) via dual functions of Pt on semiconductors interface,International Journal of Hydrogen Energy, 2022, 47(68), 29295-29304.
[8]Wang, Wei*; Wang, Jia; Zhang, Sipeng; Song, Xudong; Ma, Baojun*, Engineering of surface metal–nitrogen moieties in Fe-V based hybrid electrocatalysts for enhanced water oxidation,Journal of Materials Chemistry A, 2022, 10(23): 12334-12340.
[9]Luo, Li; Li, Dekang; Dang, Yuying; Wang, Wei; Yu, Guangsuo; Li, Jin; Ma, Baojun*, Capacitance Catalysis: Positive and Negative Effects of Capacitance of Mo2C in Photocatalytic H2 Evolution,ACS Sustainable Chemistry and Engineering, 2022, 10(18): 5949-5957.
[10]Dang, Yuying; Luo, Li; Wang, Wei; Hu, Wenfeng; Wen, Xing; Lin, Keying; Ma, Baojun*. Improving the Photocatalytic H2 Evolution of CdS by Adjusting the (002) Crystal Facet,Journal of Physical Chemistry C, 2022, 126(3): 1346-1355.
[11]Zhang, Jiawei; Dang, Yuying; Wang, Wei; Zhan, Haijuan; Song, Xudong; Ma, Baojun*.Efficiently improving the photocatalytic hydrogen evolution of g-C3N4 by (Pt/MoP) composite co-catalyst with low amount of Pt.International Journal of Hydrogen Energy, 2022, 47(4): 2338-2346.
[12]Sun, Hao; Dong, Cunlu; Huang, Aijun; Zhan, Haijuan*; Wang, Gang; Liu, Wanyi; Ma, Baojun; Wang, Wei.Transition Metal Doping Induces Ti3+ to Promote the Performance of SrTiO3@TiO2 Visible Light Photocatalytic Reduction of CO2 to Prepare C1 Product.Chemistry - A European Journal, 2022, e202200019.
[13] Zhan, Haijuan*; Shi, Xiaoyan; Tang, Bin; Wang, Gang; Ma, Baojun; Liu, Wanyi, The performance of Cu/Zn/Zr catalysts of different Zr/(Cu+Zn) ratio for CO2 hydrogenation to methanol,Catalysis Communications, 2021, 149, 106264-106268.
[14] Lin, Keying; Feng, Li; Li, Dekang; Zhang, Jiawei; Wang, Wei; Ma, Baojun*, Improved photocatalytic hydrogen evolution on (Ru/WC) /CdS via modulating the transferring paths of photo-excited electrons,Applied Catalysis B: Environmental, 2021, 286, 119880-119885.
[15] Ma, Baojun*; Dang, Yuying; Li, Dekang; Wang, Xiaoyan; Lin, Keying; Wang, Wei; Zhou, Xin*; Chen, Yifan; Xie, Tengfeng; Zhang, Xianwen; Han, Hongxian*, A Yin-Yang hybrid co-catalyst (CoOx-Mo2N) for photocatalytic overall water splitting,Applied Catalysis B: Environmental. 2021, 298,120491-120498.
[16]Shen, Yuke; Li, Dekang; Dang, Yuying; Zhang, Jiawei; Wang, Wei; Ma, Baojun*, A ternary calabash model photocatalyst (Pd/MoP)/CdS for enhancing H2 evolution under visible light irradiation,Applied Surface Science. 2021, 564, 150432-150438.
[17] Yuying Dang, Li Feng, Wenfeng Hu, Wei Wang, Qiaohong Zhang,Baojun Ma*, A 3D flower-like WC with large capacitance as efficient co-catalyst in photocatalytic H2 evolution,International Journal of Hydrogen Energy, 2021, 46, 39251-39261.
[18]Lin, Keying; Yang, Xu; Ma, Xiaolian; Han, Li; Li, Xin; Wang, Wei; Zhan, Haijuan*; Ma, Baojun*.Efficient bimetal loaded (Rh-Ni)/alpha beta-MoxC catalyst for CO2 methanation.Journal of Chemical Sciences, 2021, 133(4): 108.
[19]Wu, Zhiqiang; Wang, Gang; Yuan, Shuo; Zhan, Haijuan; Liu, Wanyi*; Bi, Shuxian; Li, Heping; Ma, Baojun; Sun, Yanyan.Synthesis, Characterization, and Properties of Highly Hydrophilic Polyaniline Sulfonic Acid.Russian Journal of General Chemistry, 2020, 90(6): 1055-1061.
[20]Lin, Keying; Feng, Li; Niu, Kun; Liu, Wanyi; Zhan, Haijuan; Ma, Baojun*.Conversion Furfural Residues Into Reducing Sugars with the Pretreatment of Ionic Liquid and Alkaline Peroxide.Waste and Biomass Valorization, 2020, 11(4): 1301-1307.
[21] Ma, Baojun*; Zhang, Sipeng; Wang, Wei; Feng, Li; Zhang, Ruisheng; Lin, Keying; Li, Dekang; Zhan, Haijuan; Yang, Xu, A novel earth-abundant W-WC heterojunction as efficient co-catalyst for enhanced photocatalytic H2 evolution,ChemCatChem, 2020, 12(4): 1148-1155.
[22] Ma, Baojun*; Li, Xin; Li, Dekang; Lin, Keying, A difunctional photocatalytic H2 evolution composite co-catalyst tailored by integration with earth-abundant material and ultralow amount of noble metal,Applied Catalysis B: Environmental, 2019, 256, 117865-117871.
[23] Ma, Baojun*; Zhang, Jiawei; Lin, Keying; Li, Dekang; Liu, Yahui; Yang, Xu, Improved Photocatalytic Hydrogen Evolution of CdS Using Earth-Abundant Cocatalyst Mo2N with Rod Shape and Large Capacitance,ACS Sustainable Chemistry & Engineering, 2019, 7(15): 13569-13575.
[24] Zhan, Haijuan*; Zhang, Na; Wu, Dan; Wu, Zhiqiang; Bi, Shuxian; Ma, Baojun; Liu, Wanyi, Controlled synthesis of β-SiC with a novel microwave sintering method,Materials Letters, 2019, 255, 126586-126589.
[25] Wu, Zhiqiang; Wang, Gang; Yuan, Shuo; Wu, Dan; Liu, Wanyi*; Ma, Baojun*; Bi, Shuxian; Zhan, Haijuan; Chen, Xiaoyan, Synthesis of bis(indolyl)methanes under dry grinding conditions, promoted by a Lewis acid–surfactant–SiO2-combined nanocatalyst,Green Chemistry, 2019, 21(13): 3542-3546.
[26] Baojun Ma*, Dekang Li, Xiaoyan Wang, and Keying Lin, Molybdenum-Based Co-catalysts in Photocatalytic Hydrogen Production: Categories, Structures, and Roles,Chemsuschem, 2018, 11(22), 3871-3881.
[27]Wang, Gang; Yuan, Shuo; Wu, Zhiqiang; Liu, Wanyi*; Zhan, Haijuan*; Liang, Yanping; Chen, Xiaoyan; Ma, Baojun; Bi, Shuxian.Ultra-low-loading palladium nanoparticles stabilized on nanocrystalline Polyaniline (Pd@PANI): A efficient, green, and recyclable catalyst for the reduction of nitroarenes.Applied Organometallic Chemistry, 2019, 33(11): e5159.
[28]Wu Zhiqiang; Liu Wanyi*; Wang Gang; Cai Wei; Yue Xiaofei; Zhan Haijuan*; Bi Shuxian; Meng Zhe; Ma Baojun.Preparation of Protonated g-C3N4/beta-SiC Composites and Photocatalytic Degradation of Alizarin Red S.Chemical Journal of Chinese Universities, 2019, 40(10): 2178-2185.
[29]Zhan, Haijuan; Shi, Xiaoyan; Ma, Baojun; Liu, Wanyi; Jiao, Xi*; Huang, Xin*.Facile one-step preparation of ordered mesoporous Ni-M-Al (M = K, Mg, Y, and Ce) oxide catalysts for methane dry reforming.New Journal of Chemistry, 2019, 43(31): 12292-12298.
[30] Baojun Ma*, Ruisheng Zhang, Keying Lin, Hongxia Liu, Xiaoyan Wang, Wanyi Liu, Haijuan Zhan, Large-scale synthesis of noble-metal-free phosphide/CdS composite photocatalysts for enhanced H2 evolution under visible light irradiation,Chinese Journal of Catalysis, 2018, 39(3), 527-533.
[31]Ma Baojun*; Wang Xiaoyan; Lin Keying; Li Jie; Liu Yahui; Zhan Haijuan; Liu Wanyi.A novel ultraefficient non-noble metal composite cocatalyst Mo2N/Mo2C/graphene for enhanced photocatalytic H2 evolution.International Journal of Hydrogen Energy, 2017, 42(30): 18977-18984.
[32] Baojun Ma*, Haojie Xu, Keying Lin, Jie Li, Haijuan Zhan, Wanyi Liu, and Can Li*, Mo2C as Non-Noble Metal Co-Catalyst in Mo2C/CdS Composite for Enhanced Photocatalytic H2 Evolution under Visible Light Irradiation,Chemsuschem, 2016, 9, 820824.
[33] Ma, Baojun*; Xie, Hao; Li, Jie; Zhan, Haijuan; Lin, Keying; Liu, Wanyi, Bifunctional solid acid photocatalyst TiO2/AC/SO3H with high acid density for pure green photosynthesis of 2-quinoline carboxamide,Journal of Molecular Catalysis A: Chemical , 2016, 420: 290-293.
[34]Baojun Ma*; Yahui Liu; Jie Li; Keying Lin; Wanyi Liu; Haijuan Zhan.Mo2N: An efficient non-noble metal cocatalyst on CdS for enhanced photocatalytic H2 evolution under visible light irradiation.International Journal of Hydrogen Energy, 2016, 41(47): 22009-22016.
[35]Baojun Ma*; Haojie Xu; Keying Lin; Jie Li; Haijuan Zhan; Wanyi Liu; Can Li*.Mo2C as Non-NobleMetal Co-Catalyst in Mo2C/CdS Composite for Enhanced Photocatalytic H2 Evolution under Visible Light Irradiation.Chemsuschem, 2016, 9(1): 1-6.
[36] Baojun Ma*, Jinsu Kim, Ting Wang, Jie Li, Keying Lin, Wanyi Liu, and Seongihl Woo, Improvement of photocatalytic oxidation activity on a WO3/TiO2heterojunction composite photocatalyst with broad spectral response,RSC Advances, 2015, 5, 79815-79819.
[37] Baojun Ma*, Keying Lin, Weiguang Su, Wanyi Liu,One-pot synthesis of ZnO/ZnGa2O4heterojunction with X/XY structure for improved photocatalytic activity,Applied Surface Science, 2014, 317 , 682-687.
[38] Keying Lin,Baojun Ma*,Yuan Sun, Wanyi Liu, Comparison between liquid and solid acids catalysts on reducing sugarsconversion from furfural residues via pretreatments,Bioresource Technology, 2014,167, 133-136.
[39] Bao Jun Ma*,Yuan Sun, Ke Ying Lin, Bing Li, Wan Yi Liu *, Physicochemical pretreatments and hydrolysis of furfural residues via carbon-based sulfonated solid acid,Bioresource Technology, 2014, 156, 189-194.
[40] Baojun Ma*, Jin Su Kim, Chang Hyuck Choi, Seong Ih1 Woo, Enhanced hydrogen generation from methano aqueous solutions over Pt/MoO3/TiO2under ultraviolet light.International Journal of Hydrogen Energy, 2013,38(9):3582-3587.
[41] Keying Lin,Baojun Ma*, Weiguang Su, Wanyi Liu, Improved photocatalytic hydrogen generation on Zn2GeO4 nanorods with high crystallinity,Applied Surface Science, 2013, 286(1): 61-65.
[42] Fuyu Wen, Jinhui Yang, Xu Zong,Baojun Ma, Donge Wang, and Can Li*. Photocatalytic H2 production on hybrid catalyst system composed of inorganic semiconductor and cobaloximes catalysts.Journal of Catalysis, 2011, 281(2), 318-324.
[43] Baojun Ma, Fuyu Wen, Hongfu Jiang, Jinhui Yang, Pinliang Ying, and Can Li*. The Synergistic effects of two co-catalysts on Zn2GeO4 on photocatalytic water splitting,Catalysis Letters, 2010, 134(1-2), 78-86.
[44] Baojun Ma, Jinhui Yang, Hongxian Han, Jiantao Wang, Xiaohong Zhang and Can Li*,Enhancement of photocatalytic water oxidation activity on IrOx−ZnO/Zn2-xGeO4-x-3yN2ycatalyst with the solid solution phase junction.Journal of Physical Chemistry C, 2010, 114 (29), 12818-12822.
[45] Guijun Ma , Hongjian Yan, Xu Zong,Baojun Ma, Hongfu Jiang, Fuyu Wen, Can Li*, Photocatalytic Splitting of H2S to Produce Hydrogen by Gas-Solid Phase Reaction,Chinese Journal of Catalysis, 2008, 29(4), 313-315.
發(fā)表中文期刊論文:
[1]田鑫, 李欣, 王薇, 呂鵬, 馬保軍*. Co/Si/Mo/Ni/Al2O3催化劑對汽油加氫脫硫性能的影響[J]. 現(xiàn)代化工, 2022, 42 (07): 130-134+140.
[2]田鑫, 李欣, 王薇, 呂鵬, 馬保軍*. H-ZSM5/ZrO2/SO42-固體酸復(fù)合催化劑的表征及烷基化反應(yīng)性能[J]. 石油學(xué)報(bào)(石油加工), 2022, 38 (05): 1042-1051.
[3]張亮亮, 汪鐳, 陳霄, 李闖, 馬保軍, 梁長海. Co2Si@C催化劑的合成及其加氫脫硫性能[J]. 分子催化, 2020, 34 (02): 116-124.
[4]吳之強(qiáng), 劉萬毅, 王剛, 蔡威, 岳曉菲, 詹海鵑, 畢淑嫻, 孟哲, 馬保軍. 質(zhì)子化g-C3N4/β-SiC復(fù)合材料的制備及光催化降解茜素紅性能[J]. 高等學(xué)校化學(xué)學(xué)報(bào), 2019, 40 (10): 2178-2185.
[5]畢淑嫻, 雷文雅, 張聰, 李廷林, 詹海鵑, 馬保軍, 劉萬毅. 磁性氧化石墨烯對HRP的固定及對苯酚的催化研究[J]. 化工新型材料, 2018, 46 (10): 243-246.
[6]張娜, 詹海鵑, 王康, 畢淑嫻, 馬保軍, 劉萬毅. 灰分對煤基碳化硅形貌的影響[J]. 材料科學(xué)與工程學(xué)報(bào), 2018, 36 (03): 465-469.
[7]馬保軍, 張瑞生, 林克英, 劉紅霞, 王曉燕, 劉萬毅, 詹海娟. 大規(guī)模合成非貴金屬磷化物/CdS復(fù)合光催化劑高效可見光催化產(chǎn)氫(英文)[J]. 催化學(xué)報(bào), 2018, 39 (03): 527-533.
[8]畢淑嫻, 景旭楠, 汪明圓, 馬保軍, 詹海娟, 劉萬毅. 磁性磺化煤基復(fù)合材料的制備及其對苯酚吸附性能研究[J]. 應(yīng)用化工, 2017, 46 (10): 1929-1933.
[9]畢淑嫻, 劉歡歡, 馬保軍, 詹海娟, 劉萬毅. ATRP法合成AC-g-PSStNa及其對辣根過氧化物酶固定化的影響[J]. 現(xiàn)代化工, 2017, 37 (08): 90-93.
[10]吳之強(qiáng), 徐澤楊, 畢淑嫻, 詹海鵑, 馬保軍, 劉萬毅. 煤基固體酸催化合成席夫堿反應(yīng)[J]. 應(yīng)用化學(xué), 2017, 34 (05): 563-571.
[11]吳之強(qiáng), 詹海鵑, 馬保軍, 李冰, 劉萬毅. 煤基碳基固體酸的制備及其催化合成環(huán)己酮甘油縮酮[J]. 現(xiàn)代化工, 2016, 36 (11): 133-136+138.
[12]王康, 吳之強(qiáng), 何康麗, 畢淑嫻, 詹海娟, 馬保軍, 劉萬毅. 碳化硅基碳復(fù)合核殼固體酸的制備及催化合成苯甲醛-1,3-丙二醇縮醛[J]. 化工進(jìn)展, 2016, 35 (07): 2103-2108.
[13]賈建平, 張曉磊, 畢淑嫻, 馬保軍, 劉萬毅. “一鍋法”無溶劑條件下碳基固體酸催化合成萘酚衍生物[J]. 化學(xué)研究與應(yīng)用, 2015, 27 (12): 1829-1835.
[14]蘇暐光, 薛屏, 馬保軍. 微生物燃料電池中碳基陽極材料和表面修飾碳基陽極材料研究進(jìn)展[J]. 科技導(dǎo)報(bào), 2015, 33 (03): 105-109.
[15]吳淑萍, 季昱丞, 馬保軍, 謝昊, 劉萬毅. 預(yù)處理糠醛渣液化降解性能研究[J]. 生物質(zhì)化學(xué)工程, 2014, 48 (06): 11-17.
[16]蘇暐光, 馬保軍. Fe2O3半導(dǎo)體中光生電荷分離和傳輸研究進(jìn)展[J]. 科技導(dǎo)報(bào), 2013, 31 (31): 75-79.
[17]林克英, 馬保軍*,蘇暐光, 劉萬毅. 光催化制氫和制氧體系中的助催化劑研究進(jìn)展[J]. 科技導(dǎo)報(bào), 2013, 31 (Z2): 103-106.
[18]蘇暐光, 馬保軍. 可見光區(qū)光催化分解水制氫的研究進(jìn)展[J]. 太陽能, 2013, (09): 21-25.
[19]馬保軍, 宗旭, 馬貴軍, 楊金輝, 應(yīng)品良, 李燦*. Zn2-xGeO4-x-3yN2y催化劑的制備、表征及可見光催化性能[J]. 化學(xué)通報(bào), 2010, 73 (06): 556-559.
[20]溫福宇, 楊金輝, 宗旭, 馬藝, 徐倩, 馬保軍, 李燦. 太陽能光催化制氫研究進(jìn)展[J]. 化學(xué)進(jìn)展, 2009, 21 (11): 2285-2302.
[21]馬貴軍, 鄢洪建, 宗旭, 馬保軍, 江宏富, 溫福宇, 李燦. 氣-固相光催化分解硫化氫制氫[J]. 催化學(xué)報(bào), 2008, (04): 313-315.
[22]林克英, 侯書恩, 馬保軍. 超聲波作用對金剛石提純效果的影響[J]. 金剛石與磨料磨具工程, 2007, (06): 9-12.
[23]林克英,潘勇,侯書恩,肖紅艷,馬保軍. 人造金剛石的提純技術(shù)[J]. 金剛石與磨料磨具工程, 2005, (05): 80-81+83.
[24]馬保軍,趙中一,林克英. TiO2光催化劑固定化技術(shù)及光催化反應(yīng)器研究[J]. 環(huán)境科學(xué)與技術(shù), 2003, (S1): 87-89.
[25]趙中一,趙麗華,馬保軍. 共沉淀富集—固相光度法快速測定微量汞[J]. 環(huán)境科學(xué)與技術(shù), 2002, (01): 9-10+46.
發(fā)表中文會議論文:
[1]張娜, 王康, 詹海鵑, 馬保軍 & 劉萬毅. (2016). Effect of Taixi coal ash content on synthesis of silicon carbide powder. (eds.) 中國化學(xué)會第30屆學(xué)術(shù)年會摘要集-第三十九分會:納米碳材料 (pp.113).
[2]吳之強(qiáng), 王彩虹, 詹海鵑, 馬保軍 & 劉萬毅. (2016). Synthesis and process optimization of benzimidazole derivatives with sulfonated carbon-based solid acid as catalyst. (eds.) 中國化學(xué)會第30屆學(xué)術(shù)年會摘要集-第三十三分會:綠色化學(xué) (pp.107).
[3]徐澤楊, 詹海鵑, 馬保軍 & 劉萬毅. (2016). Silicon carbide base carbon base solid acid catalyst preparation of Phenyl ethyl ketone glycol. (eds.) 中國化學(xué)會第30屆學(xué)術(shù)年會摘要集-第十一分會:應(yīng)用化學(xué) (pp.47).
[4]馬保軍*.P25/AC-SO42-光催化固體酸合成2-喹啉羧酰胺研究.第十四屆全國太陽能光化學(xué)與光催化學(xué)術(shù)會議, 中國, 2014-07-28至2014-07-31.
[5]馬保軍*. 一步法合成ZnO/ZnGa2O4異質(zhì)結(jié)及其光催化降解亞甲基紅性能研究.第十四屆全國太陽能光化學(xué)與光催化學(xué)術(shù)會議, 中國, 2014-07-28至2014-07-31.
[6]蘇暐光, 馬保軍, 雍海波 & 蘇麗. (2013). 新型ZnGeON可見光光催化劑的制備及其光催化性能研究. (eds.) 第十七屆全國分子篩學(xué)術(shù)大會會議論文集 (pp.536-537).
[7]蘇暐光, 馬保軍 & 侯進(jìn)福. (2013). Fe2O3/SnO2復(fù)合氧化物光催化降解亞甲基藍(lán)性能研究. (eds.) 第十七屆全國分子篩學(xué)術(shù)大會會議論文集 (pp.679-680).
[8]馬保軍*, 孫媛, 吳淑萍, 李冰, 蘇偉光 & 劉萬毅. (2013). 碳基固體酸催化劑催化水解糠醛渣制備葡萄糖. (eds.) 第十七屆全國分子篩學(xué)術(shù)大會會議論文集 (pp.709-710).
[9]馬保軍*, 林克英, 蘇暐光 & 劉萬毅. (2013). 水熱合成和后焙燒處理制備高晶化度Zn2GeO4納米棒. (eds.) 第十七屆全國分子篩學(xué)術(shù)大會會議論文集 (pp.335-336).
[10]馬貴軍, 鄢洪建, 雷志斌, 吳國鵬, 宗旭, 馬保軍 & 李燦. (2007). 氣-固相光催化分解硫化氫反應(yīng)研究. (eds.) 第十一屆全國青年催化學(xué)術(shù)會議論文集(下) (pp.415-416).
[11]劉美英,雷志斌,由萬勝,馬貴軍,吳國鵬,宗旭, 馬保軍... & 李燦. (2006). Y2Ta2O5N2催化劑上可見光催化分解水同時放氫放氧的研究. (eds.) 第十三屆全國催化學(xué)術(shù)會議論文集 (pp.341).