Gujju Narsimhulu, Calvin Samuel, Sathishkumar Palani, Sai Hemant Kumar Dasari, Kothandam Krishnamoorthy and Viswanathan Baskar
{"title":"二次相互作用稳定的有机碲恶烷大环介导的电催化析氢","authors":"Gujju Narsimhulu, Calvin Samuel, Sathishkumar Palani, Sai Hemant Kumar Dasari, Kothandam Krishnamoorthy and Viswanathan Baskar","doi":"10.1039/D3DT02746E","DOIUrl":null,"url":null,"abstract":"<p >A discrete liphophilic organotelluroxane macrocycle has been found to catalyse the hydrogen evolution reaction (HER) by proton reduction efficiently. The macrocycle is synthesized <em>via</em> chloride abstraction from bis(<em>p</em>-methoxyphenyl) tellurium dichloride (<em>p</em>-MeOC<small><sub>6</sub></small>H<small><sub>5</sub></small>)<small><sub>2</sub></small>TeCl<small><sub>2</sub></small> (<strong>1</strong>) by silver salts AgMX<small><sub>4</sub></small> (MX<small><sub>4</sub></small> = BF<small><sub>4</sub></small><small><sup>−</sup></small>, and ClO<small><sub>4</sub></small><small><sup>−</sup></small>) resulting in <em>in situ</em> generated di-cationic tetraorganoditelluroxane units; two such units are held together by two weak anions μ<small><sub>2</sub></small>-MX<small><sub>4</sub></small>, bridging to form 12-membered di-cationic macrocycles [((<em>p</em>-MeO-C<small><sub>6</sub></small>H<small><sub>4</sub></small>)<small><sub>2</sub></small>Te)<small><sub>2</sub></small>(μ-O)(μ<small><sub>2</sub></small>-F<small><sub>2</sub></small>BF<small><sub>2</sub></small>)<small><sub>2</sub></small>]<small><sup>2+</sup></small> (<strong>2</strong>) and [((<em>p</em>-MeO-C<small><sub>6</sub></small>H<small><sub>4</sub></small>)<small><sub>2</sub></small>Te)<small><sub>2</sub></small>(μ-O)(μ<small><sub>2</sub></small>-O<small><sub>2</sub></small>ClO<small><sub>2</sub></small>)<small><sub>2</sub></small>]<small><sup>2+</sup></small> (<strong>3</strong>) stabilized <em>via</em> Te–(μ<small><sub>2</sub></small>-BF<small><sub>4</sub></small>/ClO<small><sub>4</sub></small>), with secondary interactions. The charge is balanced by the presence of two more anions, one above and another below the plane of the macrocycle. Similar reaction at higher temperatures leads to the formation of telluronium salts R<small><sub>3</sub></small>TeX [X = BF<small><sub>4</sub></small><small><sup>−</sup></small> (<strong>4</strong>), ClO<small><sub>4</sub></small><small><sup>−</sup></small> (<strong>5</strong>)] as a major product. The BF<small><sub>4</sub></small><small><sup>−</sup></small> anion containing macrocycle and telluronium salt were monitored using <small><sup>19</sup></small>F NMR. HRMS confirmed the structural stability of all the compounds in the solution state. The organotelluroxane macrocycle <strong>2</strong> has been found to act as an efficient electrocatalyst for proton reduction in an organic medium in the presence of <em>p</em>-toluene sulfonic acid as a protic source.</p>","PeriodicalId":71,"journal":{"name":"Dalton Transactions","volume":" 46","pages":" 17242-17248"},"PeriodicalIF":3.5000,"publicationDate":"2023-11-06","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":"{\"title\":\"Electrocatalytic hydrogen evolution mediated by an organotelluroxane macrocycle stabilized through secondary interactions†‡\",\"authors\":\"Gujju Narsimhulu, Calvin Samuel, Sathishkumar Palani, Sai Hemant Kumar Dasari, Kothandam Krishnamoorthy and Viswanathan Baskar\",\"doi\":\"10.1039/D3DT02746E\",\"DOIUrl\":null,\"url\":null,\"abstract\":\"<p >A discrete liphophilic organotelluroxane macrocycle has been found to catalyse the hydrogen evolution reaction (HER) by proton reduction efficiently. The macrocycle is synthesized <em>via</em> chloride abstraction from bis(<em>p</em>-methoxyphenyl) tellurium dichloride (<em>p</em>-MeOC<small><sub>6</sub></small>H<small><sub>5</sub></small>)<small><sub>2</sub></small>TeCl<small><sub>2</sub></small> (<strong>1</strong>) by silver salts AgMX<small><sub>4</sub></small> (MX<small><sub>4</sub></small> = BF<small><sub>4</sub></small><small><sup>−</sup></small>, and ClO<small><sub>4</sub></small><small><sup>−</sup></small>) resulting in <em>in situ</em> generated di-cationic tetraorganoditelluroxane units; two such units are held together by two weak anions μ<small><sub>2</sub></small>-MX<small><sub>4</sub></small>, bridging to form 12-membered di-cationic macrocycles [((<em>p</em>-MeO-C<small><sub>6</sub></small>H<small><sub>4</sub></small>)<small><sub>2</sub></small>Te)<small><sub>2</sub></small>(μ-O)(μ<small><sub>2</sub></small>-F<small><sub>2</sub></small>BF<small><sub>2</sub></small>)<small><sub>2</sub></small>]<small><sup>2+</sup></small> (<strong>2</strong>) and [((<em>p</em>-MeO-C<small><sub>6</sub></small>H<small><sub>4</sub></small>)<small><sub>2</sub></small>Te)<small><sub>2</sub></small>(μ-O)(μ<small><sub>2</sub></small>-O<small><sub>2</sub></small>ClO<small><sub>2</sub></small>)<small><sub>2</sub></small>]<small><sup>2+</sup></small> (<strong>3</strong>) stabilized <em>via</em> Te–(μ<small><sub>2</sub></small>-BF<small><sub>4</sub></small>/ClO<small><sub>4</sub></small>), with secondary interactions. The charge is balanced by the presence of two more anions, one above and another below the plane of the macrocycle. Similar reaction at higher temperatures leads to the formation of telluronium salts R<small><sub>3</sub></small>TeX [X = BF<small><sub>4</sub></small><small><sup>−</sup></small> (<strong>4</strong>), ClO<small><sub>4</sub></small><small><sup>−</sup></small> (<strong>5</strong>)] as a major product. The BF<small><sub>4</sub></small><small><sup>−</sup></small> anion containing macrocycle and telluronium salt were monitored using <small><sup>19</sup></small>F NMR. HRMS confirmed the structural stability of all the compounds in the solution state. The organotelluroxane macrocycle <strong>2</strong> has been found to act as an efficient electrocatalyst for proton reduction in an organic medium in the presence of <em>p</em>-toluene sulfonic acid as a protic source.</p>\",\"PeriodicalId\":71,\"journal\":{\"name\":\"Dalton Transactions\",\"volume\":\" 46\",\"pages\":\" 17242-17248\"},\"PeriodicalIF\":3.5000,\"publicationDate\":\"2023-11-06\",\"publicationTypes\":\"Journal Article\",\"fieldsOfStudy\":null,\"isOpenAccess\":false,\"openAccessPdf\":\"\",\"citationCount\":\"0\",\"resultStr\":null,\"platform\":\"Semanticscholar\",\"paperid\":null,\"PeriodicalName\":\"Dalton Transactions\",\"FirstCategoryId\":\"92\",\"ListUrlMain\":\"https://pubs.rsc.org/en/content/articlelanding/2023/dt/d3dt02746e\",\"RegionNum\":3,\"RegionCategory\":\"化学\",\"ArticlePicture\":[],\"TitleCN\":null,\"AbstractTextCN\":null,\"PMCID\":null,\"EPubDate\":\"\",\"PubModel\":\"\",\"JCR\":\"Q2\",\"JCRName\":\"CHEMISTRY, INORGANIC & NUCLEAR\",\"Score\":null,\"Total\":0}","platform":"Semanticscholar","paperid":null,"PeriodicalName":"Dalton Transactions","FirstCategoryId":"92","ListUrlMain":"https://pubs.rsc.org/en/content/articlelanding/2023/dt/d3dt02746e","RegionNum":3,"RegionCategory":"化学","ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"Q2","JCRName":"CHEMISTRY, INORGANIC & NUCLEAR","Score":null,"Total":0}
Electrocatalytic hydrogen evolution mediated by an organotelluroxane macrocycle stabilized through secondary interactions†‡
A discrete liphophilic organotelluroxane macrocycle has been found to catalyse the hydrogen evolution reaction (HER) by proton reduction efficiently. The macrocycle is synthesized via chloride abstraction from bis(p-methoxyphenyl) tellurium dichloride (p-MeOC6H5)2TeCl2 (1) by silver salts AgMX4 (MX4 = BF4−, and ClO4−) resulting in in situ generated di-cationic tetraorganoditelluroxane units; two such units are held together by two weak anions μ2-MX4, bridging to form 12-membered di-cationic macrocycles [((p-MeO-C6H4)2Te)2(μ-O)(μ2-F2BF2)2]2+ (2) and [((p-MeO-C6H4)2Te)2(μ-O)(μ2-O2ClO2)2]2+ (3) stabilized via Te–(μ2-BF4/ClO4), with secondary interactions. The charge is balanced by the presence of two more anions, one above and another below the plane of the macrocycle. Similar reaction at higher temperatures leads to the formation of telluronium salts R3TeX [X = BF4− (4), ClO4− (5)] as a major product. The BF4− anion containing macrocycle and telluronium salt were monitored using 19F NMR. HRMS confirmed the structural stability of all the compounds in the solution state. The organotelluroxane macrocycle 2 has been found to act as an efficient electrocatalyst for proton reduction in an organic medium in the presence of p-toluene sulfonic acid as a protic source.
期刊介绍:
Dalton Transactions is a journal for all areas of inorganic chemistry, which encompasses the organometallic, bioinorganic and materials chemistry of the elements, with applications including synthesis, catalysis, energy conversion/storage, electrical devices and medicine. Dalton Transactions welcomes high-quality, original submissions in all of these areas and more, where the advancement of knowledge in inorganic chemistry is significant.