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14篇 您的检索式:作者名="SIMS IM"
    题名 作者 年代 出处 被引量
1Changes in cell wall composition during ripening of grape berries显示文摘NUNAN K J SIMS IM BACIC A ROBINSON S P F1NCHER G B 1998Plant Physiology1998,118,3:1
2Updated clinical classification of pulmonary hypertension显示文摘Sim onneau G Robbins IM Beghetti M 0,,1:1
3Characteristic enhancement of white LED lamp using low temperature co-fired ceramic-chip on board package显示文摘Jae-Kwan Sim K. Ashok Yong-Ho Ra Hong-Chul Im Byung-Joon Baek Cheul-Ro Lee 2011Current Applied Physics2011,,2:1
4Changes in cell wall composition during ripening of grape berries显示文摘Nunan KJ Sims IM Baeie A 1998Plant Physi- ology1998,118,3:1
5Isolation and character- ization of cell walls from the mesocarp of mature grape berries ( Vitis vinifera) 显示文摘Nunan K J Sims IM Bacic A 1997Planta1997,203,:1
6A comparative study of antioxidant activity in some Korean medicinal plant used as food materials显示文摘Sun Im Kim Ki Hyeon Sim Hae-Yeon Choi 0,,06:1
7Effects of panto- prazole and esomeprazole on platelet inhibition by clopidogrel显示文摘Si Spiel AO Laug IM 2009Am Heart J2009,157,:1
8Characterizing kiwifruit carbohydrate utilization in vitro and its consequences for human faecal microbiota显示文摘Rosendale DI Blatchford PA Sims IM 2012Journal of Proteome Research2012,11,12:1
9Endometrium in women with polycystic ovary syndrome during the window of implantation 显示文摘Lopes IM Baracat MC Sims Mde J 2011Rev Assoc Med Bras2011,57,6:1
10Characteristic enhancement of white LED lamp using low temperature co-fired ceramic-chip on board package显示文摘Sim J K Ashok K Ra Y H Im H C Baek B J Lee C R 0,,02:1
11Mitochondrial O5^+- and H2O2 mediate glucose deprivation-induced stress in human cancer cells 显示文摘Ahmad IM Aykin-Burns N Sim JE 2005J Biol Chem2005,280,6:1
12Endometrium in women with polycystic ovary syndrome during the window of implantation显示文摘Lopes IM Baracat MC Simes Mde J 2011Rev Assoc Med Bras2011,57,:1
13WIP deficiency reveals a differential role for WIP and the actin cytoskeleton in T cell and B cell activation显示文摘Anton IM de la Fuente MA Sims TN 2002Immunity2002,16,:1
14Biomimetic Fe_(7)S_(8)/Carbon electrocatalyst from[FeFe]-Hydrogenase for improving pH-Universal electrocatalytic hydrogen production Special Collection:Aggregation-Induced Processes and Functions显示文摘Efficient and cost-effective electrocatalysts that can operate across a wide range of pH conditions are essential for green hydrogen production.Inspired by biological systems,Fe_(7)S_(8)nanoparticles incorporated on polydopamine matrix electrocatalyst were synthesized by co-precipitation and annealing process.The resulting Fe_(7)S_(8)/C electrocatalyst possesses a three-dimensional structure and exhibits enhanced electrocatalytic performance for hydrogen production across various pH conditions.Notably,the Fe_(7)S_(8)/C electrocatalyst demonstrates exceptional activity,achieving low overpotentials of 90.6,45.9,and 107.4 mV in acidic,neutral,and alkaline environments,respectively.Electrochemical impedance spectroscopy reveals that Fe_(7)S_(8)/C exhibits the lowest charge transfer resistance under neutral conditions,indicating an improved proton-coupled electron transfer process.Continuous-wave electron paramagnetic resonance results confirm a change in the valence state of Fe from 3+to 1+during the hydrogen evolution reaction(HER).These findings closely resemble the behavior of natural[FeFe]-hydrogenase,known for its superior hydrogen production in neutral conditions.The remarkable performance of our Fe_(7)S_(8)/C electrocatalyst opens up new possibilities for utilizing bioinspired materials as catalysts for the HER.Dohun Kim Subramani Surendran Sejin Im Jaehyoung Lim Kyoungsuk Jin Ki Tae Nam Uk Sim 2024Aggregate2024,5,1:0
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