论文著作:
1)A universal principle for a rational design of single-atom electrocatalysts. Nature Catalysis 2018, 1 (5), 339-348.
2)Coupling orientation and mediation strategies for efficient electron transfer in hybrid biofuel cells. Nature Energy 2018, 3 (7), 574-581
3)Unveiling the high-activity origin of single-atom iron catalysts for oxygen reduction reaction. Proceedings of the National Academy of Sciences of the United States of America 2018, 115 (26), 6626-6631.
4)Growth of Highly Active Amorphous RuCu Nanosheets on Cu Nanotubes for the Hydrogen Evolution Reaction in Wide pH Values. Small 2020, 16 (37), 2000924.
5)Construction of Defect‐Rich RhCu Nanotubes with Highly Active Rh3Cu1 Alloy Phase for Overall Water Splitting in All pH Values. Advanced Energy Materials 2020, 10 (9), 1903038.
6)Interface construction of P-Substituted MoS2 as efficient and robust electrocatalyst for alkaline hydrogen evolution reaction. Nano Energy 2020, 78, 105253.
7)CoP nanowires coupled with CoMoP nanosheets as a highly efficient cooperative catalyst for hydrogen evolution reaction. Nano Energy 2020, 68, 104332.
8)Vertical CoP Nanoarray Wrapped by N,P‐Doped Carbon for Hydrogen Evolution Reaction in Both Acidic and Alkaline Conditions. Advanced Energy Materials 2019, 9 (22), 1803970
9)Active Site Identification and Evaluation Criteria of In Situ Grown CoTe and NiTe Nanoarrays for Hydrogen Evolution and Oxygen Evolution Reactions. Small Methods 2019, 3 (5),1900113
10)Single‐Atom Ru Doping Induced Phase Transition of MoS2 and S Vacancy for Hydrogen Evolution Reaction. Small Methods 2019, 3 (12), 1900653
11)Hydrogen Production via Efficient Formic Acid Decomposition: Engineering the Surface Structure of Pd-Based Alloy Catalysts by Design. ACS Catalysis 2019, 9 (1), 781-790.
12)Fine Tuning Electronic Structure of Catalysts through Atomic Engineering for Enhanced Hydrogen Evolution. Advanced Energy Materials 2018, 8 (24), 1800789.
13)Assessment of Catalytic Activities of Gold Nanoclusters with Simple Structure Descriptors. ACS Catalysis 2018, 8 (10), 9702-9710.
14)Design of High-Performance Pd-Based Alloy Nanocatalysts for Direct Synthesis of H2O2. ACS Catalysis 2017, 7 (3), 2164-2170.
发明专利:
1) 一种W改性载体负载金属Pd制备复合型催化剂的方法及其应用,ZL201910721830.6,20201002,程道建,李茜,吴登峰,李超
2) 对硝基苯酚加氢负载型蛋黄-蛋壳纳米结构催化剂及制法,ZL201810310548.4,20200904,程道建,杨梦洁,吴登峰,戴长庆,李超
3) Co掺杂ZnO纳米花材料的制备方法及其应用,ZL201910326781.6,20201027,程道建,李茜,黄兴凯,李超,曹东
4) 导电载体自支撑花朵状Co3V2O8锂离子电池负极材料及制备,ZL201910176672.0,20200922,程道建,黄兴凯,刘晴,于海燕,吴登峰
5) 一种在电极上直接生长ZnO纳米线制备气敏元件的方法,ZL201811517266.8,20200904,程道建,李超,栾晓旭,李茜,吴登峰
6) 一种金属纳米团簇结构优化方法,ZL201710065273.8,20190913,程道建,周营成,赵政,袁文燕
7) 一种铜纳米线负载银纳米颗粒的零维一维复合材料的制备方法,ZL201710032672.4,20190531,程道建,曹达鹏,于海燕,靳凯文,吴登峰,黄兴凯,戴长庆,张星
8) 一种常温常压快速制备铜纳米线-金属有机骨架ZIF-8复合材料的方法,ZL201610068980.8,20190409,程道建,曹达鹏,于海燕
9) 一种核壳铜纳米线/有机金属骨架复合催化剂及其制备方法和应用,ZL201710033101.2,20190329,程道建,张星,于海燕,靳凯文
10) 一种形貌可控的铂铜纳米颗粒的制备方法,ZL201710033107.X,20180525,程道建,戴长庆,杨洋,刘新月
科研项目:
1) 金属合金催化剂的化工热力学基础 130万元2018/08-2021/12 主持 国家自然科学基金优秀青年科学基金项目
2) 碱性膜燃料电池关键纳米材料的理性设计与筛选 308万元 2019/11-2024/10 参加 科学技术部重点研发计划纳米专项
3) 丙烷脱氢反应中氧化物负载铂单原子的热稳定性和催化性能调控 63万元2020/09-2024/12主持 国家自然科学基金项目面上项目
4) 乙烯环氧化制环氧乙烷银催化剂动力学研究 60万元 2020/07-2021/12 主持 中国石油天然气股份有限公司兰州化工研究中心合作技术开发合同
5) 直接合成双氧水的钯钨催化剂的设计与制备 20万元 2020/11-2022/12主持 中国石油化工股份有限公司石油化工科学研究院合作技术开发合同