2026-04-11 13:21:34
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據中國科學技術大學同步輻射實驗室新聞報道:近日,中國科學技術大學國家同步輻射實驗室姚濤教授課題組利用同步輻射X射線吸收精細結構譜學(XAFS)技術結合理論計算揭示了“Co1-N4”danhuoxingweidiancuihuajiyouhuaguangjieshuichanqingfanyinglujingdejili,bingliyongyuanzicengchenjijishuchenggongshixianlejuyougaoguangcuihuachanqinghuoxingdedanweidiancuihuaji。yanjiuchengguoyiyi“Atomic-Level Insight into Optimizing the Hydrogen Evolution Pathway over a Co1-N4 Single-Site Photocatalyst”為題發表在了《德國應用化學》上(Angew. Chem. Int. Ed. 2017, 56, 12191-12196)。該論文的第一作者是博士生曹元傑。

liyongtaiyangnenghecuihuajijiangshuifenjieweiqingjiekezaishengdeqingnengshijiejuenengyuanduanquehehuanjingwurandeyouxiaotujingzhiyi。raner,chuantongtixianghuonamicuihuajibiaomianjiegoudefuzaxing,daozhirenmenduizaiyuanzishuipinglijiecuihuahuoxingzhongxindejiegouhejilijiweiyouxian。jinnianlai,danyuanzihuoxingweidiancuihuajiyinqijuyougaoyuanziliyonglv、gaohuoxinghegaoxuanzexingdengtedian,shoudaoleguangfandeguanzhu。congyuanzishuipingshanglijiedanhuoxingweidiandegouxiaoguanxiduikekonghechengjunyidedanyuanzihuoxingweidianguangcuihuaji,tishengqitaiyangnengzhuanhuanxiaolvshifenzhongyao。
該課題組成功地通過原子層沉積技術將金屬鈷以原子級分散的形式負載在氮化碳納米片上 (見上圖)。利用同步輻射XAFS以及高角環形暗場像證實了原子級分散的Co原子與基底氮化碳形成一種獨特的“Co1-N4”結構。第一性原理計算表明,不同於傳統的Volmer-Tafel或Volmer–heyrovsky的產氫機理,該“Co1-N4”結構中配位的供體氮原子增加了電子密度,降低了產氫反應中關鍵的Co氫化物中間體的形成勢壘,從而加速了H-H耦合以促進氫氣的生成。實驗證實,合成的負載光催化劑在紫外-可見光的照射下,平均產氫速率達到10.8 mol h-1,相較於未負載單原子Co的光催化劑提升了11倍bei。這zhe種zhong單dan活huo性xing位wei點dian複fu合he型xing光guang催cui化hua劑ji相xiang信xin將jiang為wei進jin一yi步bu提ti升sheng現xian有you光guang催cui化hua劑ji的de水shui分fen解jie性xing能neng提ti供gong新xin的de設she計ji思si路lu和he方fang法fa,同tong時shi也ye為wei從cong原yuan子zi尺chi度du探tan究jiu催cui化hua活huo性xing中zhong心xin和he反fan應ying機ji理li提ti供gong新xin認ren識shi。
該項研究得到了國家重點研發計劃、國家自然科學基金、中科大重要方向培育基金等項目的資助。
附文章詳細鏈接:http://onlinelibrary.wiley.com/doi/10.1002/anie.201706467/full。