> 2025年-生物质与生物能源实验室(2023)
2025年

#为共同第一作者(Equal contributors);*为通讯作者(Corresponding Author);IF为当年或五年影响因子;被引次数(Times Cited)更新日期为2025年12月8日。

A functional cascading of lignin modification via repression of caffeic acid O-methyltransferase for bioproduction and anti-oxidation in rice

A functional cascading of lignin modification via repression of caffeic acid O-methyltransferase for bioproduction and anti-oxidation in rice

Journal of Advanced Research. (2025). 78: 1-9. (IF: 13).

Hua Yu#, Guifen Zhang#, Jingyuan Liu, Peng Liu, Hao Peng, Zhipeng Teng, Yong Li, Xifeng Ren, Chunxiang Fu, Jingfeng Tang, Mi Li, Yanting Wang, Lingqiang Wang*, Liangcai Peng*

Semi-overexpressed OsMYB86L2 specifically enhances cellulose biosynthesis to maximize bioethanol productivity by cascading lignocellulose depolymerization via integrated rapid-physical and recyclable-chemical processes

Semi-overexpressed OsMYB86L2 specifically enhances cellulose biosynthesis to maximize bioethanol productivity by cascading lignocellulose depolymerization via integrated rapid-physical and recyclable-chemical processes

Green Chemistry. (2025). 27: 9127-9143. (IF: 11.034). 封面论文.

Hailang Wang, Sufang Li, Leiming Wu, Weihua Zuo, Mingliang Zhang, Youmei Wang, Zhengyi Lv, Peng Chen, Peng Liu, Yujing Yang, Liangcai Peng, Yanting Wang*

Distinct lignocelluloses of plant evolution are optimally selective for complete biomass saccharification and upgrading Cd2+/Pb2+ and dye adsorption via desired biosorbent assembly

Distinct lignocelluloses of plant evolution are optimally selective for complete biomass saccharification and upgrading Cd2+/Pb2+ and dye adsorption via desired biosorbent assembly

Bioresource Technology. (2025). 417: 131856. (IF: 11.889)

Huiyi Zhang#, Yongtai Wang#, Hao Peng, Boyang He, Yunong Li, Hailang Wang, Zhen Hu, Hua Yu, Yanting Wang, Mengzhou Zhou, Liangcai Peng, Miao Wang*

An optimal conversion cascading of distinct lignocelluloses to maximize  bioethanol productivity and bio-adsorption capacities of Cd2+/Cr(VI) and  red/blue dyes selective for complete biomass recycling

An optimal conversion cascading of distinct lignocelluloses to maximize bioethanol productivity and bio-adsorption capacities of Cd2+/Cr(VI) and red/blue dyes selective for complete biomass recycling

International Journal of Biological Macromolecules. (2025). 321: 146214. (IF: 8.5)

Wenbo Yang#, Boyang He#, Hua Yu, Huiyi Zhang, Yunong Li, Jingyuan Liu,Hao Peng, Hailang Wang, Peng Liu, Yanting Wang, Liangcai Peng, Dan Sun*

Effective xylan integration for remodeling biochar uniformity and porosity to enhance chemical elimination and CO2 adsorption

Effective xylan integration for remodeling biochar uniformity and porosity to enhance chemical elimination and CO2 adsorption

International Journal of Biological Macromolecules. (2025). 291: 138865. (IF: 8.5; Times Cited: 2)

Yongtai Wang#, Huiyi Zhang#, Yunong Li, Hua Yu, Dan Sun, Yujing Yang, Ran Zhang, Li Yu, Fei Ma, Muhammad Nauman Aftab, Liangcai Peng, Yanting Wang*

Hematological, histological, and nmr analysis of meat quality and growth performance of broilers fed with probiotics bacillus licheniformis-supplemented poultry feed

Hematological, histological, and nmr analysis of meat quality and growth performance of broilers fed with probiotics bacillus licheniformis-supplemented poultry feed

Probiotics and Antimicrobial Proteins. (2025). 9: 1 (IF: 4.4)

Basit Ali Khan, Sundas Sharif, Amna Mehdi, Iram Liaqat, Sikander Ali, Asad-ur-Rehman, Liangcai Peng, Sohail Afzal, Muhammad Nauman Aftab*

Biochar from Al (OH)3‑activated sugarcane bagasse for efficient removal of cadmium: Optimization using the response surface method (RSM)

Biochar from Al (OH)3‑activated sugarcane bagasse for efficient removal of cadmium: Optimization using the response surface method (RSM)

Biomass Conversion and Biorefinery. (2025). 19487–19504 (IF: 4.987).

Mahmoud M. A. Bakr, Yongtai Wang,Hao Peng, M. M. A. Dawoud, Liangcai Peng, Yanting Wang*

Distinct morphology and self-assembly behavior of Xylan nanoparticles are  correlated with arabinose side-chains in Sorghum

Distinct morphology and self-assembly behavior of Xylan nanoparticles are correlated with arabinose side-chains in Sorghum

Carbohydrate Polymers . (2025). 336: 123874. (IF: 12.5).

Youmei Wang#, Yaoyao Zhu#, Min Li, Bingyi Ji, Shisheng Liu, Weiqing Liu, Zhen Hu, Hui Zhang, Wei Zhang, Liangcai Peng, Zhaosheng Kong*

AtTRM11 as a tRNA 2-methylguanosine methyltransferase modulates flowering and bacterial resistance via translational regulation

AtTRM11 as a tRNA 2-methylguanosine methyltransferase modulates flowering and bacterial resistance via translational regulation

Plant Science. (2025). 352: 112368. (IF: 5.363.; Times Cited: 1).

Zhengyi Lv, Lun Guan, Ruixuan Yao, Hanchen Chen, Hailang Wang, Xukai Li, Xiaodong Xu, Liangcai Peng, Youmei Wang*, Peng Chen*

Single-cell insights into carbon dots interactions with plant cell walls for  distinct internalization pathways via surface charge modulation

Single-cell insights into carbon dots interactions with plant cell walls for distinct internalization pathways via surface charge modulation

Carbon (2025). 245: 120747. (IF: 11.6)

Luyao Wei#, Binshou Wang, Shuling Cao, Hang Tan, Tianyi Long, Chuanfei Bian, Liangcai Peng, Hongliang Wang, Xu Cheng, Wanbin Zhu *

Advances in microbial biofuel production by metabolic and enzyme engineering, synthetic biology, metagenomics, and genome editing applications

Advances in microbial biofuel production by metabolic and enzyme engineering, synthetic biology, metagenomics, and genome editing applications

Emerging Topics in Life Sciences (2025) 001: 18 (IF: 3.4).

Syeda Soran Alam, Amna Mehdi, Asma Zafar, Sikander Ali, Asad-ur- Rehman, Irum Liaqat, Liangcai Peng, Fariha Kanwal, Sohail Afzal*

MADS-box transcription factors as green-revolution regulators for plant longevity and biomass production

MADS-box transcription factors as green-revolution regulators for plant longevity and biomass

Green Carbon. (2025). 3: 110-112. (即时篇引:15)

Yixiang Wang#, Jingyuan Liu#, Xifeng Ren, Chunxiang Fu, Liangcai Peng, Yanting Wang*

水稻突变体 Osfc116 的镉高效积累与吸附特性及其对酶解产糖产醇的促进作用

水稻突变体 Osfc116 的镉高效积累与吸附特性及其对酶解产糖产醇的促进作用

农业资源与环境学报. (2025). 256:124651.

高冰,余俊生,魏锋,王艳婷,彭良才,余华*

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