1.
Designing CdS Mesoporous Networks on Co‐C@Co9S8 Double‐Shelled Nanocages as Redox‐Mediator‐Free Z‐Scheme Photocatalyst
by Reddy, D. Amaranatha
ChemSusChem, 10 January 2018, Vol.11(1), pp.245-253

2.
Hierarchical Layered WS2/Graphene‐Modified CdS Nanorods for Efficient Photocatalytic Hydrogen Evolution
by Xiang, Quanjun
ChemSusChem, 10 May 2016, Vol.9(9), pp.996-1002

3.
Rationally designed n-n heterojunction with highly efficient solar hydrogen evolution.
by Xu, Miao
ChemSusChem, April 13, 2015, Vol.8(7), pp.1218-1225

4.
Heterostructured WS2 -MoS2 Ultrathin Nanosheets Integrated on CdS Nanorods to Promote Charge Separation and Migration and Improve Solar-Driven Photocatalytic Hydrogen Evolution.
by Reddy, D Amaranatha
ChemSusChem, April 10, 2017, Vol.10(7), pp.1563-1570

5.
Hydrothermal synthesis of a doped Mn-Cd-S solid solution as a visible-light-driven photocatalyst for H2 evolution.
by Ikeue, Keita
ChemSusChem, February 18, 2011, Vol.4(2), pp.269-273

6.
Synergistic Effect of a Molecular Cocatalyst and a Heterojunction in a 1 D Semiconductor Photocatalyst for Robust and Highly Efficient Solar Hydrogen Production.
by Jiang, Daochuan
ChemSusChem, November 9, 2016, Vol.9(21), pp.3084-3092

7.
CdS Nanowires Decorated with Ultrathin MoS2 Nanosheets as an Efficient Photocatalyst for Hydrogen Evolution.
by He, Jie
ChemSusChem, March 21, 2016, Vol.9(6), pp.624-630

8.
Assembly of Ultra‐Thin NiO Layer Over Zn1−xCdxS for Stable Visible‐Light Photocatalytic Overall Water Splitting
by Ning, Xiaofeng
ChemSusChem, 05 April 2019, Vol.12(7), pp.1410-1420
