论文著作:
[1] Lincai Peng, Yixuan Yu, Shenghan Gao, Miaomiao Wang, Junhua Zhang, Rui Zhang, Wenlong Jia, Yong Sun, Huai Liu*. Coupling Cu+species and Zr single atoms for synergetic catalytic transfer hydrodeoxygenation of 5-hydroxymethylfurfural. ACS Catalysis, 2024, 14: 6623–6632.
[2] Rui Zhang, Junhua Zhang, Huai Liu, Zhicheng Jiang, Xudong Liu, Wei Wang, Lincai Peng*, Changwei Hu*. Toward value-added chemicals from carbohydrates via C-C bond cleavage and coupling transformations. ACS Catalysis, 2024, 14(7): 5167–5197.
[3] Yujia He, Rui Zhang, Weipeng Song, Huai Liu, Junhua Zhang, Wenlong Jia, Lincai Peng*. 1,4-Dioxane intervention enables simultaneous valorization of biomass-based C5 and C6 sugars to furfural over Hβ zeolite. Chemical Engineering Journal, 2024, 480: 148092.
[4]Huai Liu, Yanping Kong, Weipeng Song, Rui Zhang, Junhua Zhang, Yong Sun, Lincai Peng*. Pretreatment greatly facilitates ethyl levulinate production from catalytic alcoholysis of Napier grass stem. Chemical Engineering Journal, 2024, 481: 148559.
[5] Weipeng Song, Junhua Zhang, Yong Sun, Rui Zhang, Lincai Peng*, Huai Liu*. Solvent-promoted selective chemocatalytic hydroxymethylation of biomass furanic compounds. Chemical Engineering Journal, 2024, 490: 151749.
[6] Guoxing Liu, Huai Liu*, Junhua Zhang, Rui Zhang, Heng Zhang, Yong Sun, Lincai Peng*. Efficient production of 5-hydroxymethylfurfural from concentrated carbohydrates and raw biomass over SnP2O7-SnO2catalysts. ACS Sustainable Chemistry & Engineering, 2023, 11: 18001–18010.
[7] Junxian Yang, Yongshi Li, Bingzhen Liu, Kun Wang, Hui Li*, Lincai Peng*. Carboxymethyl cellulose-based multifunctional film integrated with polyphenol-rich extract and carbon dots from coffee husk waste for active food packaging applications. Food Chemistry, 2024, 448: 139143.
[8] Peng Shan, Kun Wang, Fangfei Sun, Yongshi Li, Liping Sun, Hui Li*, Lincai Peng*. Humidity-adjustable functional gelatin hydrogel/ethyl cellulose bilayer films for active food packaging application. Food Chemistry, 2024, 439: 138202.
[9] Zhongdi Liu, Rui Zhang*, Huai Liu, Junhua Zhang, Yong Sun, Naya Li, Lincai Peng*. Effect of carbon modifier on characteristics and catalytic properties of zeolite-carbon hybrid supported Zr towards γ-valerolactone production. Fuel, 2024, 359: 130380.
[10] Yixuan Yu, Huai Liu*, Junhua Zhang, Heng Zhang, Yong Sun, Lincai Peng*. Highly efficient, amorphous bimetal Ni-Fe borides-catalyzed hydrogenolysis of 5-hydroxymethylfurfural into 2,5-dimethylfuran. Renewable Energy, 2023, 209: 453–461.
[11] Qiang Lu, Yuefang Chen, Weipeng Song, Chaonan Tao, Junhua Zhang, Yong Sun, Lincai Peng*, Huai Liu*. Mechanistic role of γ-valerolactone co-solvent to promote ethyl levulinate production from cellulose transformation in ethanol. Fuel, 2023, 346: 128371.
[12] Weipeng Song, Huai Liu, Junhua Zhang, Yong Sun, Lincai Peng*.Understanding Hβ zeolite in 1,4-dioxane efficiently converts hemicellulose-related sugars to furfural. ACS Catalysis, 2022, 12: 12833–12844.
[13] Lincai Peng, Chaonan Tao, Hui Yang, Junhua Zhang and Huai Liu*. Mechanistic insights into the effect of feed concentration on product formation during acid-catalyzed conversion of glucose in ethanol. Green Chemistry, 2022, 24, 5219–5227.
[14] Lincai Peng, Xin Huangfu, Yao Liu, Huai Liu*, Junhua Zhang*. Natural lignocellulose welded Zr–Al bimetallic hybrids for the sustainable conversion of xylose to alkyl levulinate. Renewable Energy, 2022, 193: 357–366.
[15] Hui Yang, Chaonan Tao, Lincai Peng*, Junhua Zhang, Liang He, Huai Liu*. Reactive and mechanistic insights into the acid-catalyzed conversion of C5/C6 sugars in ethylene glycol. ACS Sustainable Chemistry & Engineering, 2022, 10: 1920–1931.
[16] Xin Gao, Zhe Yu, Xiaoning Tang, Heng Zhang, Lincai Peng*, Jiaqi Li. Augmented antibacterial mechanism of ZnO nanoparticles by labyrinthian-channel configuration of maize-stalk carbohydrate columns and sustainable strategy for water decontamination. Journal of Hazardous Materials, 2022, 436: 129258.
[17] Xin Yu, Lincai Peng*, Jun Dai, Hui Li, Chaonan Tao, Fa Yang, Junhua Zhang. Ethylene glycol co-solvent enhances alkyl levulinate production from concentrated feeds of sugars in monohydric alcohols. Fuel, 2021, 304: 121471.
[18] Xueying Gao, Xin Yu, Lincai Peng*, Liang He, Junhua Zhang*. Magnetic Fe3O4nanoparticles and ZrO2-doped mesoporous MCM-41 as a monolithic multifunctional catalyst for γ-valerolactone production directly from furfural. Fuel, 2021, 300: 120996.
[19] Hui Li, Huimin Zhang, Yiding Luo, Hongbo Shi, Lincai Peng*.Fabrication of durable and sustainable superhydrophobic-superoleophilic paper for efficient oil/water separation. Cellulose, 2021, 28: 5033–5053.
[20] Chaonan Tao, Lincai Peng*, Junhua Zhang, Liang He.Al-modified heteropolyacid facilitates alkyl levulinate production from cellulose and lignocellulosic biomass: Kinetics and mechanism studies. Fuel Processing Technology, 2021, 213: 106709.
[21] Weipeng Song, Lincai Peng*, Danish Bakhshyar, Liang He, Junhua Zhang.Mild O2-aided alkaline pretreatment effectively improves fractionated efficiency and enzymatic digestibility of Napier grass stem towards a sustainable biorefinery. Bioresource Technology, 2021, 319: 124162.
[22] Lincai Peng*, Mengmeng Wang, Hui Li, Juan Wang, Junhua Zhang, Liang He.tert-Butanol intervention enables chemoselective conversion of xylose to furfuryl alcohol over heteropolyacids. Green Chemistry, 2020, 22: 5656–5665.
[23] Tao Chen, Lincai Peng*, Xin Yu, Liang He. Magnetically recyclable cellulose-derived carbonaceous solid acid catalyzed the biofuel 5-ethoxymethylfurfural synthesis from renewable carbohydrates. Fuel, 2018, 219: 344–352.
[24] Shuaizhu Bi, Lincai Peng*, Keli Chen, Zhengliang Zhu. Enhanced enzymatic saccharification of sugarcane bagasse pretreated by combining O2and NaOH. Bioresource Technology, 2016, 214: 692–699.
[25] Lincai Peng, Yahong Meng, Hui Li*. Facile fabrication of superhydrophobic paper with improved physical strength by a novel layer-by-layer assembly of polyelectrolytes and lignosulfonates-amine. Cellulose, 2016, 23(3): 2073–2085.
[26] Lincai Peng*, Xueying Gao, Keli Chen. Catalytic upgrading of renewable furfuryl alcohol to alkyl levulinates using AlCl3as a facile, efficient, and reusable catalyst. Fuel, 2015, 160: 123–131.
[27] Hui Li, Lincai Peng*, Lu Lin*, Keli Chen, Heng Zhang. Synthesis, isolation and characterization of methyl levulinate from cellulose catalyzed by extremely low concentration acid.Journal of Energy Chemistry, 2013, 22(6): 895–901.
[28] Lincai Peng, Lu Lin*, Hui Li.Extremely low sulfuric acid catalyst system for synthesis of methyl levulinate from glucose. Industrial Crops and Products, 2012, 40: 136–144.
[29] Lincai Peng, Lu Lin*, Hui Li, Qiulin Yang. Conversion of carbohydrates biomass into levulinate esters using heterogeneous catalysts. Applied Energy, 2011, 88(12): 4590–4596.
[30] Lincai Peng, Lu Lin*, Junhua Zhang, Jianbin Shi, Shijie Liu*. Solid acid catalyzed glucose conversion to ethyl levulinate. Applied Catalysis A: General, 2011, 397(1–2): 259–265.
发明专利:
[1]彭林才,孔艳萍,张俊华,宋伟鹏.一种巨菌草茎秆制备乙酰丙酸乙酯的方法, 2024.03.19,中国, ZL202110714134.X
[2]彭林才,皇甫鑫,张俊华.一种双功能生物质碳基催化剂及其在催化制备乙酰丙酸酯中的应用, 2023.08.15,中国, ZL202110511935.6
[3]彭林才,皇甫鑫.一种生物质碳基催化剂及其在选择性催化木糖中的应用, 2023.02.16,中国, ZL202110511395.1
[4]彭林才,高雪影,余鑫.一种糠醛直接制备乙酰丙酸酯的方法, 2021.03.02,中国, ZL201810514877.0
[5]彭林才,余鑫,高雪影,戴俊,陈涛.一种利用葡萄糖制备5-乙氧甲基糠醛的方法, 2021.05.07,中国, ZL201810543431.0
[6]彭林才,闭帅珠,陈克利.一种酶解糖化蔗渣的预处理方法, 2018.04.03,中国, ZL201510269307.6
[7]彭林才,李辉.基于层层点击键合自组装的聚乳酸材料及其制备方法, 2018.09.04,中国, ZL201710367523.3