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价k_i(i≠0)均为2的交换结合Scheme
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作者 徐邦腾 《湖北大学学报(自然科学版)》 CAS 1995年第1期33-38,共6页
价是交换结合Scheme的重要数量特征,有较强的组合性质,利用价来讨论某些交换结合Scheme的构造与性质,是一个常用的方法.设=(X,{Ri}i=0,1,...,d)是一个类d的交换结合Scheme.k0,k1,.... 价是交换结合Scheme的重要数量特征,有较强的组合性质,利用价来讨论某些交换结合Scheme的构造与性质,是一个常用的方法.设=(X,{Ri}i=0,1,...,d)是一个类d的交换结合Scheme.k0,k1,...,kd是的价.本文证明了,若k1=k2=...=kd=2,则 是对称结合Scheme. 展开更多
关键词 交换结合scheme 邻接矩阵 结合scheme
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一类对称结合scheme的非本原性 被引量:1
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作者 徐邦腾 《湖北大学学报(自然科学版)》 CAS 1994年第1期34-38,共5页
利用结合scheme的价给出了一类非本原对称结合scheme。设是一个类d>1的对称结合scheme,k0,k1,…,kd是X的价,本文证明了,若2∈{k1,…,kd}且|{k1,…,kd}|>1,则是非本原的。
关键词 结合scheme 非本原 对称 组合理论
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S-scheme CeO_(2)/Cd_(7.23)Zn_(2.77)S_(10)-DETA heterojunctions for superior cocatalyst-free visible-light photocatalytic hydrogen evolution
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作者 LI Wen MENG Ao-yun +2 位作者 LI Zhen ZHANG Jin-feng FU Jun-wei 《Journal of Central South University》 2024年第12期4572-4585,共14页
The intensifying global energy crisis,coupled with environmental degradation from fossil fuels,highlights that photocatalytic hydrogen evolution technology offers a promising solution due to its efficiency and sustain... The intensifying global energy crisis,coupled with environmental degradation from fossil fuels,highlights that photocatalytic hydrogen evolution technology offers a promising solution due to its efficiency and sustainability.In this study,we synthesized CeO_(2)/Cd_(7.23)Zn_(2.77)S_(10)-DETA(diethylenetriamine is abbreviated as DETA,and subsequently CeO_(2)is referred to as EO,Cd_(7.23)Zn_(2.77)S_(10)-DETA is abbreviated as ZCS,and the composite with EO comprising 30%is abbreviated as EO/ZCS)nanocomposites with S-scheme heterojunctions.Under conditions without external co-catalysts and utilizing only visible light as the excitation source,EO/ZCS nanocomposites exhibited outstanding photocatalytic hydrogen evolution activity and remarkable stability,presenting significant advantages over conventional methods that rely on co-catalysts and ultraviolet light.The photocatalytic hydrogen evolution rate of EO/ZCS nanocomposites reached 4.11 mmol/(g·h),significantly surpassing that of EO(trace)and ZCS(2.78 mmol/(g·h)).This substantial enhancement is attributed to the S-scheme charge transfer mechanism at the heterojunctions in EO/ZCS nanocomposites,which effectively facilitates the efficient separation and transfer of photogenerated electron-hole pairs,thereby substantially enhancing photocatalytic hydrogen evolution activity.Through techniques such as X-ray photoelectron spectroscopy(XPS)and theoretical calculations,we confirmed the formation of S-scheme heterojunctions and elucidated their photocatalytic hydrogen evolution mechanism.The results underscore the potential of EO/ZCS nanocomposites as highly efficient and stable photocatalysts for hydrogen production under environmentally benign conditions. 展开更多
关键词 photocatalytic hydrogen nanocomposites S-scheme heterojunctions
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