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9篇 您的检索式:作者名="Jason ROSE"
    题名 作者 年代 出处 被引量
1A review on photo-thermal catalytic conversion of carbon dioxide显示文摘The conversion of carbon dioxide into value-added products is of great industrial and environmental interest. However, as carbon dioxide is relatively stable, the input energy required for this conversion is a significant limiting factor in the system's performance. By utilising energy from the sun, through a range of key routes, this limitation can be overcome. In this review, we present a comprehensive and critical overview of the potential routes to harvest the sun's energy, primarily through solar-thermal technologies and plasmonic resonance effects. Focusing on the localised heating approach, this review shortlists and compares viable catalysts for the photo-thermal catalytic conversion of carbon dioxide.Further, the pathways and potential products of different carbon dioxide conversion routes are outlined with the reverse water gas shift,methanation, and methanol synthesis being of key interest. Finally, the challenges in implementing such systems and the outlook to the future are detailed.Ee Teng Kho Tze Hao Tan Emma Lovell Roong Jien Wong Jason Scott Rose Amal 2017Green Energy & Environment2017,2,3:7
2Harnessing the Beneficial Attributes of Ceria and Titania in a Mixed-Oxide Support for Nickel-Catalyzed Photothermal CO_2 Methanation显示文摘太阳能驱动二氧化碳(CO_2)转化为燃料是解决CO_2减排和快速增长的世界能源需求的理想方案。本文利用光照辐射镍基负载催化剂床层引发加热效应以促进CO_2的转化,研究了不同组成的氧化铈-氧化钛复合氧化物载体及其对光热CO_2转化的影响。提高光热CO_2甲烷化活性的两个至关重要的因素分别是:(1)优化的镍颗粒负载对于高活性催化面积及用于加热催化床层的更高的光吸收能力是必需的;(2)载体上的缺陷位对于促进CO_2吸附及随后的活化是必需的。载体中的钛对维持掺杂氧化钛的氧化铈上的氧空位缺陷起着关键作用。当氧化铈和氧化钛混合比例理想时,再结合高光照吸收以及稳定的还原状态,有利于CO_2吸附及随后高效光热CO_2甲烷化反应的发生。Ee Teng Kho Salina Jantarang Zhaoke Zheng Jason Scott Rose Amal 2017Engineering2017,3,3:2
3The mGluR7 allosteric agonist AMN082 produces antidepressant-like effects by modulating glutamatergic signaling显示文摘Stefania R Bradley Jason M Uslaner Rose B Flick 2012Pharmacol Biochem Behav2012,101,1:1
4LY2801653 is an orally bioavailable multi-kinase inhibitor with potent activity against MET, MST1R, and other oncoproteins, and displays anti-tumor activities in mouse xenograft models显示文摘S. Betty Yan Victoria L. Peek Rose Ajamie Sean G. Buchanan Jeremy R. Graff Steven A. Heidler Yu-Hua Hui Karen L. Huss Bruce W. Konicek Jason R. Manro Chuan Shih Julie A. Stewart Trent R. Stewart Stephanie L. Stout Mark T. Uhlik Suzane L. Um Yong Wang Wenj 2013Investigational New Drugs2013,,4:1
5Emerging material engineering strategies for amplifying photothermal heterogeneous CO_(2)catalysis显示文摘Closing the carbon loop,through CO_(2)capture and utilization,is a promising route to mitigate climate change.Solar energy is a sustainable energy source which can be exploited to drive catalytic reactions for utilizing CO_(2),including converting the CO_(2)into useful products.Solar energy can be harnessed through a range of different pathways to valorize CO_(2).Whilst using solar energy to drive CO_(2)reduction has vast potential to promote catalytic CO_(2)conversions,the progress is limited due to the lack of understanding of property-performance relations as well as feasible material engineering approaches.Herein,we outline the various driving forces involved in photothermal CO_(2)catalysis.The heat from solar energy can be utilized to induce CO_(2)catalytic reduction reactions via the photothermal effect.Further,solar energy can act to modify reaction pathways through light-matter interactions.Light-induced chemical functions have demonstrated the ability to regulate intermediary reaction steps,and thus control the reaction selectivity.Photothermal catalyst structures and specific catalyst design strategies are discussed in this context.This review provides a comprehensive understanding of the heat-light synergy and guidance for rational photothermal catalyst design for CO_(2)utilization.Bingqiao Xie Emma Lovell Tze Hao Tan Salina Jantarang Mengying Yu Jason Scott Rose Amal 2021Journal of Energy Chemistry2021,30,8:1
6Simulation modelling of potato virus Y spread in relation to initial inoculum and vector activity显示文摘Potato virus Y(PVY)is a non-persistent virus that is transmitted by many aphid species and causes significant damage to potato production.We constructed a spatially-explicit model simulating PVY spread in a potato field and used it to investigate possible effects of transmission efficiency,initial inoculum levels,vector behavior,vector abundance,and timing of peak vector activity on PVY incidence at the end of a simulated growing season.Lower PVY incidence in planted seed resulted in lower virus infection at the end of the season.However,when populations of efficient PVY vectors were high,significant PVY spread occurred even when initial virus inoculum was low.Non-colonizing aphids were more important for PVY spread compared to colonizing aphids,particularly at high densities.An early-season peak in the numbers of noncolonizing aphids resulted in the highest number of infected plants in the end of the season,while mid-and late-season peaks caused relatively little virus spread.Our results highlight the importance of integrating different techniques to prevent the number of PVY-infected plants from exceeding economically acceptable levels instead of trying to control aphids within potato fields.Such management plans should be implemented very early in a growing season.Andrew GALIMBERTI Andrei ALYOKHIN Hongchun QU Jason ROSE 2020Journal of Integrative Agriculture2020,19,2:1
7The effect of preparation method on the photoactivity of crystalline titanium dioxide particles显示文摘SARAH S W DONIA B JASON A S ROSE A 2003Chemical Engineering2003,95,:1
8Short Telomeres and Stem Cell Exhaustion Model Duchenne Muscular Dystrophy in mdx/mTR Mice显示文摘Alessandra Sacco Foteini Mourkioti Rose Tran Jinkuk Choi Michael Llewellyn Peggy Kraft Marina Shkreli Scott Delp Jason H. Pomerantz Steven E. Artandi Helen M. Blau 2010Cell2010,,7:1
9利用100天挑战框架改善对孤独症儿童及其家庭的支持显示文摘以社区为基础来支持孤独症儿童及家庭,可以预防危机,减少住院1。Lauren Wallace-Thompson和Jason Rose介绍了他们的联合倡议及其产生的影响,该倡议是与Bromley委员会和孤独症儿童及青少年父母和照料者一道开展的。Lauren Wallace-Thompson Jason Rose 陈静(译) 何燕玲(校) 2022英国医学杂志中文版2022,25,5:0
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