论文著作:
[1] H Ma, X Ju, B Cui, S Meng, Yi Liu, J Li, D Wang, Z Yang*. Type III Porous Liquids Based on MOF-Derived Carbon for CO2 Capture, ACS Applied Materials & Interfaces, 2025,17 (9), 13836-13850.
[2] H Ma, B Cui, J Li, X Ju , D Wang, Z Yang*. Enhancing CO2 adsorption in hierarchical carbon aerogels via deep eutectic solvent-encapsulated carbon source pyrolysis, Journal of Environmental Chemical Engineering, 2025,13:115789.
[3] B Cui, X Ju, H Ma, S Meng, Yuxi Liu , J Wang ,D Wang, Z Yang*. Aerogel-based carbon capture materials: Research progress and application prospects, Separation and Purification Technology,2025 354:128794.
[4] S Meng, X Ju, J Wang, B Cui, Y , H Ma ,D Wang, Z Yang*. Development of efficient CO2 adsorbents: Synthesis and performance evaluation of dopamine-modified halloysite nanotubes loaded with ZIF-8, Separation and Purification Technology, 2025,357 :130179.
[5] Y Liu, Z Yang*, S Qu et al. Study on microcrystalline structure and model construction of semi-coke based on XRD, XPS, FTIR, 13C NMR, and HRTEM.Journal of Molecular Structure, 2025,1327:141264.
[6] X Ju, Z Yang*, X Duan, J Wang , Y Xin, Dechao Wang. Microwave-assisted in-situ growth of Zr-MOP-NH2 on the LDH surface for enhancing CO2 capacity,Fuel, 2024,358 :130259.
[7] Yi Liu, Z Yang*,· X Ju, B Cui, J, D Wang, Z Chen , A Zhou. Molecular simulation of the slurrying mechanism in microplastic semicoke water slurry, Journal of Molecular Modeling, 2024, 30:298.
[8] J Lia, Y Xin , Z Dong, B Cui,Y Zheng, Z Yang*. D Wang, Porous liquids based on ZIF-67@ZIF-8 through the strategy of interface layer reconstruction for CO 2 selective sorption, Chemical Engineering Journal, 2024, 500: 156655.
[9] Yi Liu, Z Yang*,· X Ju, B Cui, J, D Wang, Z Chen. A Zhou. Preparation of pitch semi-coke water slurry and itsproperties of slurryability and gasification, Energy Sources. Part A: Recovery, Utilization, and Environmental Effects,2024, 46(1): 15421–15434.
[10] X Ju , Y Liu, Z Yang* , B Cui , et al. Transforming clay minerals into solvent-free nanofluids via an interfacial interaction: An experimental and simulation study. Colloids and Surfaces A: Physicochemical and Engineering Aspects, 2024, 689:133742.
[11] 汪静雯, 王德超, 辛洋洋, 鞠晓茜, 蒙蜀黔, 都峙烨,李嘉迪, 郑亚萍, 杨志远*. 多孔液体在 CO 2 捕集与利用领域的研究进展. 精细化工,2024,41(1):1-11.
[12] H Zhu, Z Yang*, Y Yao. Preparation of the modified sludge-semi-coke water slurry and analysis of its slurring performance and mechanism. Powder Technology, 2023, 413: 118039.
[13] X Ju, Z Yang*, D Wang et al. Expanding the gallery of solvent-free nanofluids: Using layered double hydroxides as core nanostructures. Chemical Engineering Journal, 2023,455 :140797.
[14] X Ju, Z Yang*, D Wang et al. The new emerging MXene/LDHs nanocomposites: A critical review of synthesis strategies, morphological regulation, and application prospects. Materials Today, 2023, 34:101908.
[15] X Ju, Z Yang*, J Wang, et al. Converting Nanoflower-like Layered Double Hydroxides into Solvent-Free Nanofluids for CO2 Capture Applied. ACS Appl. Mater. Interfaces 2023, 15, 48, 56181–56191.
[16] 段欣博,杨志远*, 鞠晓茜, 等.金属有机多面体材料的制备及应用进展[J].化工新型材料, 2023,51(04): 20-25.
发明专利:
[1] 杨志远, 都峙烨, 屈伸,等. 一种地下富油煤层低温原位热解产物的干法分离回收利用系统, ZL 2023 2 1998064.6,实用新型专利. 2024
[2] 杨志远, 屈伸, 鞠晓茜,等. 一种富油煤井下原位热解产物分离回收系统, ZL 2023 2 1776713.8, 实用新型专利, 2024.
[3] 杨志远,何明辉, 屈伸,等. 基于深度学习算法的煤岩显微组分识别系统V1.0. 2024SR0719131, 软件著作权, 2024.
[4] 杨志远, 孟茁越, 李智华, 等. 一种基于粒度级配的兰炭浆制备方法, CN109233920A. 2019.
[5] 杨志远, 贺宇, 刘娇萍, 等. 一种从打印废纸中分离出高纯度纤维素的方法, CN105970709A. 2016.
[6] 杨志远, 宣自润, 王德超, 等. 一种煤层气的富集工艺, CN103880578A. 2014.